Compression Science and Technology (CST group)
CST group aspires to understand the structural, electronic, optical and chemical transitions of matters (nano metals/ceramics, MOFs, ferroelectric/ferromagnetic materials, et al) under the miscellaneous extreme conditions (Ultra-high pressure, high/low temperature, Electrical/Magnetic Field), develops the in-situ synchrotron beamlines (XRD, PDF, IR, XAFS, etc); and challenges the dedicated high-pressure techniques/instruments.
1) Probing atomic structure by in-situ high pressure TEM
The in-situ TEM and DAC device facilities provide promising experimental techniques whereby the behavior of defects such as dislocations and twins under high stress loading. We can therefore directly observe and characterize the dynamical process of defect motions, which are crucial for understanding and tuning the materials' properties under stress loading.
In-situ high-pressure TEM; Advanced Materials, 1906105 (2019)
2) Pressure-tuned electronic structure of MOF and AIE under pressure
Porous metal organic frameworks (MOFs) have been widely applied into gas storage and separation, which required that MOF materials owned high mechanical stability. Newly synthesized metal-doped MOF materials based on multi-carboxylate ligands have been characterized under high pressure (HP) condition using in-situ synchrotron X-ray diffraction, which would provide detailed structural information and help to understand the insight of structure-mechanical property. As a conventional insulator, the band structures of MOF can be tuned by metallic ion doping and then further optimized through high pressure techniques, which paves a new road in the field of electrochemical catalysis.
Ultra-stable MOFs under pressure; Inorganic Chemistry, 61, 15166−15174 (2022)
3) High-pressure beamline 15U1b @ SSRF
At the 15U1b beamline (dedicated high-pressure XRD, HPSTAR) of SSRF, the synchrotron beam focuses down to ~ 3.2 um @ 20 keV.
Beamline 15U1b
PI | ||||
Zhiqiang Chen | Ph.D. in Materials Science | New Jersey Institute of Technology | chenzq@hpstar.ac.cn | |
Associate Specialists | ||||
Hongliang Dong | Ph.D. in Materials Physics and Chemistry | Chinese Academy of Sciences | Hongliang.dong@hpstar.ac.cn | |
Yang Lu | yang.lu@hpstar.ac.cn | |||
Students | ||||
Ziyou Zhang | ziyou.zhang@hpstar.ac.cn | |||
Jie Wu | jie.wu@hpstar.ac.cn | |||
Chenghao Qian | chenghao.qian@hpstar.ac.cn | |||
Alumni | ||||
Chengping Zhang | M. S in Physics | Nanjing University | ||
Yunlei Zhao | B. S. in Physics | Nanjing University | ||
Hongkai Gu | M. S. in Physics | Jilin University |
1. Ziyou Zhang, G.-X. Qin, X.-M. Li, Hongliang Dong, Shun Wan, Y.-H. Ni, J. Liu, Zhiqiang Chen, and Z. Su, Enhanced mechanical stability and proton conductivity performance from the dense Mn(II)-metal–organic framework to porous Mn(II)–Fe(III)-metal–organic framework, Inorg. Chem. 61, 15166−15174 (2022) (通讯作者,影响因子:5.436)
2. Jianing Xu, Lingkong Zhang, Hailun Wang, Y. Gao, T. Wei, Resta A. Susilo, C. Zha, Bin Chen, Hongliang Dong, and Zhiqiang Chen, Phase transitions in amorphous germanium under non-hydrostatic compression, Crystals 12, 898 (2022) (通讯作者,影响因子:2.589)
3. Jiajia Feng, Cong Li, Wen Deng, B. Lin, W. Liu, Resta A. Susilo, Hongliang Dong, Zhiqiang Chen, N. Zhou, X. Yi, X. Z. Xing, F. Ke, Z. Liu, Hongwei Sheng, Z. Shi, and Bin Chen, Superconductivity induced by Lifshitz transition in pristine SnS2 under high pressure, J. Phys. Chem. Lett. 13, 9404−9410 (2022)
4. Xiaoliang Zhang, Weiwei Li, Shun Wan, Jiajia Feng, Meng Song, Junxiu Liu, Gui Wang, Zhiqiang Chen, Bin Chen, Hengzhong Zhang, Pressure dependence of the electrical conductivities of high-entropy diborides, J. Eur. Ceram. Soc. 42, 6951−6957 (2022)
5. Y. Zhao, Hongliang Dong, Zhiqiang Chen, and Y. Deng, Controllably introducing exposed surfaces to nanocrystalline CeO2 catalysts by high-pressure treatment. J. Nanosci. Nanotechnol. 21, 693−697 (2021). (通讯作者,影响因子:1.354)
6. Y. Ren, J. Li, Y. Zhao, J. Ciston, K. Bustillo, R. Zhang, Hongliang Dong, Zhiqiang Chen, A. M. Minor, and Y. Deng, A strain-driven thermotropic phase boundary in BaTiO3 at room temperature by cycling compression. AIP Adv. 11, 115122 (2021) (影响因子:1.548)
7. H. Zhai, T. Gao, X. Zheng, J. Li, B. Chen, Hongliang Dong, Zhiqiang Chen, G. Zhao, S. Cao, C. Cai, and V. V. Marchenkov, Magnetocrystalline anisotropy and dynamic spin reorientation of half-doped Nd0.5Pr0.5FeO3 single crystal. Chin. Phys. B 30, 077502 (2021) (影响因子:1.494)
8. He Li, MingzhiYuan, Dayong Tan, Rest A. Susilo, Hongliang Dong, Zhiqiang Chen, Y. Zhao, Y. Deng, and Bin Chen, Revealing the unusual grain growth of nanoparticles in calcination: oriented attachment in the solid state. CrystEngComm 23, 4152 (2021) (影响因子:3.84)
9. He Li, J. Wang, Resta A. Susilo, Hongliang Dong, Shun Wan, Mingzhi Yuan, J. Liu, H. Wang, Zhiqiang Chen, D. He, and Bin Chen, Grain-size gradient structure by abnormal grain growth. MRS Commun.11, 62−69 (2021) (影响因子:2.62)
10. Y. Wu, P. Nan, Z. Chen, Z. Zeng, S. Lin, X. Zhang, Hongliang Dong, Zhiqiang Chen, H. Gu, W. Li, Y. Chen, B. Ge, and Y. Pei, Manipulation of band degeneracy and lattice strain for extraordinary PbTe thermoelectrics, Research 2020, 8151059 (2020) (影响因子:N/A)
11. Y. Xiao, Y. Wu, P. Nan, Hongliang Dong, Z. Chen, Zhiqiang Chen, Hongkai Gu, B. Ge, W. Li, and Y. Pei, Cu interstitials enable carriers and dislocations for thermoelectric enhancements in n-PbTe0.75Se0.25, Chem 6, 523–537 (2020) (影响因子:22.804)
12. Yu Deng,+* Ruopeng Zhang, Thomas C. Pekin, Christoph Gammer, Jim Ciston, Peter Ercius, Colin Ophus, Karen Bustillo, Chengyu Song, Shiteng Zhao, Hua Guo, Yunlei Zhao, Hongliang Dong, Zhiqiang Chen,+ and Andrew M. Minor,* Functional materials under stress: In situ TEM observations of structural evolution, Adv. Mater. 32, e1906105 (2020) (共同一作,影响因子:30.85)
13. Jianing Xu , Tianlin Huang , Hongliang Dong, Dayong Tan, Zongqiang Feng, Tingcha Wei, Resta A. Susilo, Yanju Wang, Hailun Wang, Mingzhi Yuan, Lingkong Zhang, Shun Wan, Yuanjie Huang, Tiecheng Lu, Yan Chen, Zhiqiang Chen,* and Bin Chen,Structural and mechanical properties of magnesium aluminate nanoceramics under high pressure, Applied Physics Letters 117, 041901 (2020) (通讯作者,影响因子:3.596)
14. J. Chen, Z. Li, Hongliang Dong, Jianing Xu, V. Wang, Zhenjie Feng, Zhiqiang Chen, Bin Chen, N. Chen, and Ho-Kwang Mao, Pressure induced unstable electronic states upon correlated nickelates metastable perovskites as batch synthesized via heterogeneous nucleation, Adv. Funct. Mater. 30, 2000987 (2020) (影响因子:18.81)
15. Y. Wu, P. Nan, Z. Chen, Z. Zeng, R. Liu, Hongliang Dong, L. Xie, Y. Xiao, Zhiqiang Chen, H. Gu, W. Li, Y. Chen, B. Ge, and Y. Pei, Thermoelectric Enhancements in PbTe Alloys Due to Dislocation-Induced Strains and Converged Bands, Ad. Sci. 7, 1902628 (2020) (影响因子:14.39)
16. Jiajia Feng, Resta A. Susilo, B. Lin, Wen Deng, Yanju Wang, B. Li, K. Jiang, Zhiqiang Chen, X. Xing, Z. Shi, C. Wang, and Bin Chen, Achieving room-temperature charge density wave in transition metal dichalcogenide 1T-VSe2, Adv. Electron. Mater. 6, 1901427 (2020) (影响因子:7.295)
17. Y. Deng, C. Gammer, J. Ciston, P. Ercius, C. Ophus, K. Bustillo, C. Song, R. Zhang, D. Wu, Y. Du, Zhiqiang Chen, H. Dong, A. G. Khachaturyan, and A. M. Minor, Hierarchically-structured large superelastic deformation in ferroelastic-ferroelectrics. Acta Mater. 181, 501−509 (2019) (影响因子:8.203)
18. Y. L. Zhao, Zhiqiang Chen, Y. Deng, Synthesis and characterization of flower-like clewed PbTiO3 nanowires prepared by hydrothermal method, Advances in Engineering Research, 181, 226−229 (2019) (影响因子:1.30)
19. X. Zheng, T. Gao, W. Jing, X. Y. Wang, Y. S. Liu, Bin Chen, Hongliang Dong, Zhiqiang Chen, S. X. Cao, C. B. Cai, and V. V. Marchenkov, Evolution of Griffiths phase and spin reorientation in perovskite manganites, J. Magn. Magn. Mater. 491, 165611 (2019) (影响因子:2.993)
20. Bin Chen, Yuanjie Huang, Jianing Xu, Xiaoling Zhou, Zhiqiang Chen, Hengzhong Zhang, J. Zhang, J. Qi, T. Lu, J. F. Banfield, J. Yan, S. V. Raju, A. E. Gleason, S. Clark, and A. A. MacDowell, Revealing the ductility of nanoceramic MgAl2O4, J. Mater. Res. 34, 1489−1498 (2019) (影响因子:2.624)
21. Hajra Saqib, Saqib Rahman, D. Errandonea, Resta A. Susilo, A. Jorge-Montero, P. Rodríguez-Hernández, A. Muñoz, Y. Sun, Zhiqiang Chen, N. Dai, and Bin Chen, Giant conductivity enhancement: Pressure-induced semiconductor-metal phase transition in Cd0.90Zn0.1Te, Phys. Rev. B 99, 094109 (2019) (影响因子:4.036)
22. Y. T. Zou, W. Zhang, X. F. Li, M. N. Ma, X. A. Li, C. H. Wang, B. He, S. M. Wang, Zhiqiang Chen, Y. S. Zhao, and B. S. Li, Pressure-induced anomalies and structural instability in compressed β-Sb2O3, Phys. Chem. Chem. Phys. 20, 11430−11436 (2018) (影响因子:3.676)
23. T. Gao, M. Wu, N. N. Qi, T. Zhou, X. J. Luo, Y. S. Liu, K. Xu, V. V. Marchenkov, Hongliang Dong, Zhiqiang Chen, and Bin Chen, Giant low field magnetocaloric effect and magnetostructural coupling in MnCoGe1-xInx around room temperature, J. Alloys Compd. 753, 149−154 (2018) (影响因子:5.316)
24. Chenping Zhang, Zhiqiang Chen, and Y. Deng, The in situ lattice distortion study on relaxor PMN-PT single-crystal under external loading, J. Nanosci. Nanotechnol.17, 6210–6215 (2017) (通讯作者,影响因子:1.354)
25. Feng Ke, Haini Dong, Y. B. Chen, J. B. Zhang, C. L. Liu, J. K. Zhang, Y. Gan, Y. H. Han, Zhiqiang Chen, C. X. Gao, J. S. Wen, Wenge Yang, Xiao Jia Chen, V. VStruzhkin, Ho-Kwang Mao, and Bin Chen, Decompression driven superconductivity enhancement in In2Se3, Adv. Mater. 29, 1701983 (2017) (影响因子:30.85)
26. Chengping Zhang, Zhiqiang Chen, and Y. Deng, Phase transition and phonon characteristics of PbTiO3 single-crystal nanorods prepared in NaCl flux, Advances in Engineering Research, 5th ICMEME 90, 125–130 (2016) (通讯作者,影响因子:1.30)
27. Chunyu Li, Feng Ke, Qingyang Hu, Zhenhai Yu, J. G. Zhao, Zhiqiang Chen, and Hao Yan, Correlated structural and electronic phase transformations in transition metal chalcogenide under high pressure, J. Appl. Phys.119, 135901 (2016) (影响因子:2.546)
28. T Wu, H Chen, P Gao, T Yu, Z Chen, Z Liu, K H Ahn, X Wang, S-W Cheong, T A Tyson, Pressure dependent structural changes and predicted electrical polarization in perovskite RMnO3, Journal of Physics: Condensed Matter, 28, 056005 (2016) (影响因子:2.333)
29. Z Liu, Z Yao, M Yao, J Lv, S Chen, Q Li, H Lv, T Wang, S Lu, R Liu, B Liu, J Liu, Z Chen, B Zou, T Cui, and B Liu, High-pressure behavior of bromine confined in the one-dimensional channels of zeolite AlPO4-5 single crystals, J. Chem. Phys., 145, 124319 (2016) (影响因子:3.488)
30. Y Zou, X Qi, C Zhang, S Ma, WZhang, Y Li, T Chen, X Wang, Z Chen, D Welch, P Zhu, B Liu, Q Li, T Cui, B Li, Discovery of Superconductivity in Hard Hexagonal ε-NbN, Scientific Reports, 6, 22330 (2016) (影响因子:4.379)
31. X Liu, Z Xiong, S R Shieh, Q He, L Deng, Y Zhang, L Chang, F Wang, X Hong, Z Chen, Non-monotonic compositional dependence of isothermal bulk modulus of the (Mg1–xMnx)Cr2O4 spinel solid solutions, and its origin and implication, Solid Earth Sciences, 1-12 (2016) (影响因子:3.50)
32. C Li, F Ke, Q Hu, Z Yu, J Zhao, Z Chen, H Yan, Correlated structural and electronic phase transformations in transition metal chalcogenide under high pressure, Journal of Applied Physics, 119, 135901 (2016) (影响因子:2.546)
33. S Zhang, K Zhao, X Yu, J Zhu, Q Liu, X Wang, S Feng, Z Chen, Y Zhao, C Jin, Pressure-induced shift of Tc and structural transition in “122” type pnictide superconductor Ca0. 34Na0.66Fe2As2, AIP Advances, 6, 075104 (2016) (影响因子:1.548)
34. H. Zhang, T Yu, Z Chen, C S Nelson, L N Bezmaternykh, A M M Abeykoon, and T A Tyson, Probing magnetostructural correlations in multiferroic HoAl3(BO3)4, Physical Review B, 92, 104108 (2015) (影响因子:4.036)
35. O Rivin, A Broide, S Maskova, M S. Lucas, A Hen, B Gurion, I Orion, S Salhov, M Shandalov, A Moreira, J Molaison, Z Chen, I Halevy, High Pressure Neutron Powder Diffraction Study of Fe1-xCrx with and without Hydrogen Exposure, Hyperfine Interactions, 213, 29 (2015) (影响因子:1.13)
36. H Lv, M yao, Q Li, R Liu, B Liu, Z Yao, D Liu, Z Liu, J Liu, Z Chen, B Zou, T Cui, B Liu, Insertion of N2 into the Channels of AFI Zeolite under High Pressure, Scientific Reports, 5, 13234 (2015) (影响因子:4.379)
37. Xiaoxiang Xi, Xu-Gang He, Fen Guan, Zhenxian Liu, RD Zhong, JA Schneeloch, TS Liu, GD Gu, X Du, Z Chen, XG Hong, Wei Ku, GL Carr Bulk signatures of pressure-induced band inversion and topological phase transitions in Pb1− xSnxSe, Physical review letters, 113 (9), 096401 (2014) (影响因子:9.161)
38. Q Li, H Zhang, B Cheng, R Liu, B Liu, J Liu, Z Chen, B Zou, T Cui, B Liu , Pressure-induced amorphization in orthorhombic Ta2O5: An intrinsic character of crystal, Journal of Applied Physics, 115 (19), 193512 (2014) (影响因子:2.546)
39. M Lang, F Zhang, J Zhang, CL Tracy, AB Cusick, J VonEhr, Z Chen, C Trautmann, R C Ewing, Swift heavy ion-induced phase transformation in Gd2O3, Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, 326, 121-125 (2014) (影响因子:1.377)
40. D Fan, S Wei, M Ma, Z Chen, B Li, H Xie, High-pressure elastic behavior of Ca4La6 (SiO4) 6 (OH) 2 a synthetic rare-earth silicate apatite: a powder X-ray diffraction study up to 9.33 GPa, Physics and Chemistry of Minerals, 41 (2), 85-90, (2014) (影响因子:1.31)
41. X Yang, Q Li, R Liu, B Liu, S Jiang, K Yang, J Liu, Z Chen, B Zou, T Cui , B Liu, A novel pressure-induced phase transition in CaZrO3, CrystEngComm, 16 (21), 4441-4446, (2014) (影响因子:3.40)
42. Q Li, B Cheng, B Tian, R Liu, B Liu, F Wang, Z Chen, B Zou, T Cui, B. Liu, Pressure-induced phase transitions of TiO2 nanosheets with high reactive {001} facets, RSC Advances, 4, 12873 (2014) (影响因子:3.245)
43. Y Chen, X Xi, WL Yim, F Peng, Y Wang, H Wang, Y Ma, G Liu, C Sun, C Ma, Z Chen, H Berger, High-pressure phase transitions and structures of topological insulator BiTeI, The Journal of Physical Chemistry C, 117 (48), 25677-25683 (2013)
44. X Xi, C Ma, Z Liu, Z Chen, W Ku, H Berger, C Martin, D B Tanner, G L Carr,Signatures of a Pressure-Induced Topological Quantum Phase Transition in BiTeI, Physical Review Letters, 111, 155701 (2013) (主要贡献作者)
45. L Chang, Z Chen, X Liu, H Wang, Expansivity and compressibility of wadeite-type K2Si4O9 determined by in situ high T/P experiments, and their implication, Phys Chem Minerals, 40, 29–40 (2013) (主要贡献作者)
46. D Fan, M Ma, S Wei, Z Chen, H Xie, In-situ synchrotron powder X-ray diffraction study of vanadinite at room temperature and high pressure., High Temperatures--High Pressures, 42 (5), 441-449 (2013)
47. D Fan, M Ma, S Wei, Z Chen, H Xie , High Pressure Elastic Behavior of Synthetic Mg3Y2(SiO4)3 Garnet up to 9 GPa, Advances in Materials Science and Engineering 2013, 1-6 (2013)
48. J Zhao, Z Hao, L Ehm, D Dong, Z Chen, G Gu, High-pressure phase transitions, amorphization, and crystallization behaviors in Bi2Se3, Journal of Condensed Matter Physics, 25, 125602 (2013)
49. J Zhao, H Liu, L Ehm, D Dong, Z Chen, Q Liu, W Hu, N Wang, C Jin, Pressure-Induced Phase Transitions and Correlation between Structure and Superconductivity in Iron-Based Superconductor Ce(O0. 84F0. 16)FeAs, Inorganic chemistry, 52(14), 8067-8073 (2013)
50. D Fan, M Ma, S Wei, BS Li, Z Chen, H Xie, In-situ synchrotron X-ray diffraction study of scorodite at high pressure., High Temperatures--High Pressures, 42(3), 203-209 (2013)
51. S Wei, M Ma, D Fan, J Yang, W Zhou, B Li, Z Chen, H Xie, Compressibility of mimetite and pyromorphite at high pressure, High Pressure Research, 33(1), 27-34 (2013)
52. X Yang, Q Li, Z Liu, X Bai, H Song, M Yao, B Liu, R Liu, C Gong, S Lu, Z Chen, B Liu et. al. Pressure-induced amorphization in Gd2O3/Er3+ Nanorods, Journal of Physical Chemistry C, 117(16), 8503-8508 (2013)
53. Q Li, B Cheng, X Yang, R Liu, B Liu, J Liu, Z Chen, B Zou, T Cui, B Liu, Morphology-tuned phase transitions of anatase TiO2 nanowires under high pressure, Journal of Physical Chemistry C, 117(16), 8516-8521 (2013)
54. B Cheng, Q Li, M Yao, R Liu, D Li, B Zou, T Cui, J Liu, Z Chen, Z Zhao et. al., High pressure phase transition of ZnO/SiO2 core/shell nanospheres, Journal of Applied Physics, 113(5), 054314 (2013)
55. C Gong, Q Li, R Liu, Y Hou, J Wang, X Dong, B Liu, X Yang, Z Yao, X Tan, D Li, J Liu, Z Chen, B Zou, T Cui, B Liu, Structural phase transition and photoluminescence properties of YF 3 and YF 3: Eu 3+ under high pressure, Physical Chemistry Chemical Physics, 15(45), 19925-19931 (2013)
56. M Ma, W Liu, Z Chen, Z Liu, B Li, Compression and structure of brucite to 31 GPa from synchrotron X-ray diffraction and infrared spectroscopy studies, American Mineralogist, 98, 33–40 (2013) (主要贡献作者)
57. Q He, X Liu, B Li, L Deng, Z Chen, X Liu, H Wang, Expansivity and compressibility of strontium fluorapatite and barium fluorapatite determined by in situ X-ray diffraction at high-T/P conditions: significance of the M-site cations, Physics and Chemistry of Minerals, 40, 1-12 (2013)
58. F Zhang, M Lang, J Zhang, Z Chen, Z Liu, J Lian, R Ewing, Phase Transition and Abnormal Compressibility of Lanthanide Silicate with the Apatite Structure, Phys. Rev. B: Condens. Matter, 85, 214116 (2012)
59. H Lv, M Yao, Q Li, R Liu, B Liu, S Lu, L Jiang, W Cui, Z Liu, Z Chen, The structural stability of AlPO4-5 zeolite under pressure: Effect of the pressure transmission medium, J. Appl. Phys., 111, 112615 (2012)
60. P Wang, Q Li, R Liu, M Yao, D Li, B Zou, T Cui, J Liu, Z Chen, B Liu, High pressure-induced structural phase transition in hexagonal CeF3 nanoplates, J. Appl. Phys., 111, 112627 (2012)
61. Q Li, R Liu, B Liu, L Wang, K Wang, D Li, B Zou, T Cui, J Liu, Z Chen, Stability and phase transition of nanoporous rutile TiO2 under high pressure, RSC Adv., 2, 9052 (2012)
62. D Fan, M Ma, S Wei, Z Chen, H Xie, Synchrotron X-ray diffraction study of phenacite at high pressure, Chin. Phys. C 36, 179 (2012)
63. Q He, X Liu, X Hu, L Deng, Z Chen, B Li, Y Fei, Solid solutions between lead fluorapatite and lead fluorvanadate apatite: compressibility determined by using a diamond-anvil cell coupled with synchrotron X-ray diffraction, Phys. Chem. Miner., 39, 219 (2012)
64. X Hong, Z Chen, T Duffy, Absolute x-ray Energy Calibration over a Wide Energy Range Using a Diffraction-based Iterative Method, Rev. Sci. Instrum., 83(6), 063901 (2012) (主要贡献作者)
65. D Fan, M Ma, J Yang, S Wei, Z Chen, H Xie, In Situ High-Pressure Synchrotron X-Ray Diffraction Study of Clinozoisite, Chin. Phys. Lett., 28(12), 126103 (2011)
66. H Lv, M Yao, Q Li, Z Li, B Liu, R Liu, S Lu, D Li, J Mao, X Ji, J Liu, Z Chen, B Zou, T Cui, B Liu, Effect of Grain Size on Pressure-Induced Structural Transition in Mn3O4, J. Phys. Chem. C, 116(3), 2165-2171 (2011)
67. J Zhao, H Liu, L Ehm, Z Chen, S Sinogeikin, Y Zhao, G Gu, Pressure Induced Disordered Substitution Alloy in Sb2Te3, Inorg. Chem., 50(22), 11291-11293 (2011)
68. X Liu, Q He, L Deng, S Zhai, X Hu, B Li, L Zhang, Z Chen, L Qiong, Equation of State of CAS Phase to Pressure of the Uppermost Lower Mantle at Ambient Temperature, Sci. China-Earth Sci., 54(9), 1394-1399 (2011)
69. P Gao, Z Chen, T Tyson, T Wu, K Ahn, Z Liu, R Tappero, S Kim, S Cheong, High-pressure Structural Stability of Multiferroic Hexagonal RMnO3 (R=Y, Ho, Lu), Phys. Rev. B: Condens. Matter., 83, 224113 (2011) (主要贡献作者)
70. I Halevy, A Hen, A Broide, ML Winterrose, S Zalkind, Z Chen, High-pressure irreversible amorphization of La 1/3 NbO 3, Journal of Modern Physics, 2(05), 323 (2011)
71. X Zou, C Gong, B Liu, Q Li, Z Li, B Liu, R Liu, J Liu, Z Chen, et al., X-ray Diffraction of Cubic Gd2O3/Er under High Pressure, Phys. Status Solidi B, 248(5), 1123-1127 (2011)
72. Q Liu, X Yu, X Wang, Z Deng, Y Lv, J Zhu, S Zhang, H Liu, W Yang, Z Chen, et al., Pressure-Induced Isostructural Phase Transition and Correlation of FeAs Coordination with the Superconducting Properties of 111-Type Na1-xFeAs, J. Am. Chem. Soc., 133, 7892–7896 (2011)
73. L Ehm, L Borkowski, J Parise, S Ghose, Z Chen, Evidence of Tetragonal Nanodomains in the High Pressure Polymorph of BaTiO3, Appl. Phys. Lett., 98(2), 021901 (2011)
74. I Halevy, A Hen, A Broide, ML Winterrose, S Zalkind, Z Chen, High-Pressure Irreversible Amorphization of La1/3NbO3, Journal of Modern Physics, 2(5) (2011)
75. Z Li, B Liu, S Yu, J Wang, Q Li, B Zou, T Cui, Z Liu, Z Chen, The Study of Structural Transition of ZnS Nanorods under High Pressure, J. Phys. Chem. C, 115, 357-361 (2011)
76. B Liu, M Yao, B Liu, Z Li, R Liu, Q Li, D Li, B Zou, T Cui, G Zou, J Liu, Z Chen, High-Pressure Studies on CeO2 Nano-Octahedrons with a (111)-Terminated Surface, J. Phys. Chem. C, 115, 4546-4551 (2011)
77. W Liu, Q Jie, Q Li, Z Chen, B Li, Synchrotron X-ray Study of Filled Skutterudites CeFe4Sb12 and Ce0.8Fe3CoSb12, Physica B, 406(1), 52-55 (2011)
78. D Fan, M Ma, W Zhou, S Wei, Z Chen, H Xie, X-ray Diffraction Study of Arsenopyrite at High Pressure, Phys. Chem. Miner., 38(2), 95 (2011)
79. L Ehm, M Vaughan, T Duffy, Z Liu, L Wang, B Li, D Weidner, Z Chen, S Ghose, High-Pressure Research at the National Synchrotron Light Source, Synchrotron Radiation News, 23(3), 24-30 (2010)
80. Z Chen, T Tyson, K Ahn, Z Zhong, J Hu, Origin of the Non-linear Pressure Effects in Perovskite Manganites: Buckling of Mn–O–Mn Bonds and Jahn–Teller Distortion of the MnO6 Octahedra Induced by Pressure, J. Magn. Magn. Mater., 322, 3049-3052 (2010)(第一作者)
81. T. A. Tyson, Z. Chen, Q. Jie, Q. Li and J. J. Tu, Local structure of thermoelectric Ca3Co4O9, Phys. Rev. B: Condens. Matter., 79, 024109 (2009) (主要贡献作者)
82. T. A. Tyson, Z. Chen, M. Deleon, et al, Local Structure of multiferroic RMn2O5: Important role of the R site, J. Magn. Magn. Mater., 321, 1714-1718 (2009) (主要贡献作者)
83. C Cui, T Tyson, Z Chen, Z Zhong, Transport and Structural Study of Pressure-induced Magnetic States in Nd0.55Sr0.45MnO3 and Nd0.5Sr0.5MnO3, Phys. Rev. B: Condens. Matter., 68(21), 214417 (2003) (主要贡献作者)
84. Pu L, Chen ZQ, Tan C, et al., Microstructural models of alumina nanotubes and anodic porous alumina film formed in sulphuric acid, Chinese Physics Letters, 19 (3), 391-394 (2002) (主要贡献作者)
85. Feng Li, Liying Chen, Zhiqiang Chen, et al., Two-Step Solid-state synthesis of tin oxide and its gas-sensing property, Materials Chemistry and Physics, 73, 335-338 (2002)
86. Ma Guo-bin, Chen Zhi-qiang, et al.,HRTEM Study on microstructures of a-PbO2-type TiO2 nanocrystals, Journal of Chinese Electron Microscopy Society, Vol.19 No.4, 421(2002)
87. Zhu Jianmin, Ma Guo-bin, Chen Zhi-qiang, et al., HRTEM Study on 3D self-assembly of complex oxide nanoparticles, Journal of Chinese Electron Microscopy Society, Vol.19 No.4, 423 (2002)
88. Chen Zhi-qiang, Jian-min Zhu, et al., HRTEM Study on CdSe/HgSe/CdSe QDQW, Journal of Chinese Electron Microscopy Society, Vol.19 No.4, 401 (2002) (第一作者)
89. Chen Zhi-qiang, Jian-min Zhu, et al., HRTEM Study on Nuclear Shell Microstructure of CdSe/HgSe/CdSe Quatumn Dot Quantum Well, Journal of Synthetic Crystals, Vol.29 No.5, 253 (2002) (第一作者)
90. Chen Zhi-qiang, Zhu Jian-min, et al., TEM study on Ultrasonic-Hydrothermal Preparation of Submicron Sphere CdSe, Journal of Chinese Electron Microscopy Society, Vol.19 No.5, 619-620 (2002) (第一作者)
Compression Science and Technology (CST group)
CST group aspires to understand the structural, electronic, optical and chemical transitions of matters (nano metals/ceramics, MOFs, ferroelectric/ferromagnetic materials, et al) under the miscellaneous extreme conditions (Ultra-high pressure, high/low temperature, Electrical/Magnetic Field), develops the in-situ synchrotron beamlines (XRD, PDF, IR, XAFS, etc); and challenges the dedicated high-pressure techniques/instruments.
1) Probing atomic structure by in-situ high pressure TEM
The in-situ TEM and DAC device facilities provide promising experimental techniques whereby the behavior of defects such as dislocations and twins under high stress loading. We can therefore directly observe and characterize the dynamical process of defect motions, which are crucial for understanding and tuning the materials' properties under stress loading.
In-situ high-pressure TEM; Advanced Materials, 1906105 (2019)
2) Pressure-tuned electronic structure of MOF and AIE under pressure
Porous metal organic frameworks (MOFs) have been widely applied into gas storage and separation, which required that MOF materials owned high mechanical stability. Newly synthesized metal-doped MOF materials based on multi-carboxylate ligands have been characterized under high pressure (HP) condition using in-situ synchrotron X-ray diffraction, which would provide detailed structural information and help to understand the insight of structure-mechanical property. As a conventional insulator, the band structures of MOF can be tuned by metallic ion doping and then further optimized through high pressure techniques, which paves a new road in the field of electrochemical catalysis.
Ultra-stable MOFs under pressure; Inorganic Chemistry, 61, 15166−15174 (2022)
3) High-pressure beamline 15U1b @ SSRF
At the 15U1b beamline (dedicated high-pressure XRD, HPSTAR) of SSRF, the synchrotron beam focuses down to ~ 3.2 um @ 20 keV.
Beamline 15U1b
PI | ||||
Zhiqiang Chen | Ph.D. in Materials Science | New Jersey Institute of Technology | chenzq@hpstar.ac.cn | |
Associate Specialists | ||||
Hongliang Dong | Ph.D. in Materials Physics and Chemistry | Chinese Academy of Sciences | Hongliang.dong@hpstar.ac.cn | |
Yang Lu | yang.lu@hpstar.ac.cn | |||
Students | ||||
Ziyou Zhang | ziyou.zhang@hpstar.ac.cn | |||
Jie Wu | jie.wu@hpstar.ac.cn | |||
Chenghao Qian | chenghao.qian@hpstar.ac.cn | |||
Alumni | ||||
Chengping Zhang | M. S in Physics | Nanjing University | ||
Yunlei Zhao | B. S. in Physics | Nanjing University | ||
Hongkai Gu | M. S. in Physics | Jilin University |
1. Ziyou Zhang, G.-X. Qin, X.-M. Li, Hongliang Dong, Shun Wan, Y.-H. Ni, J. Liu, Zhiqiang Chen, and Z. Su, Enhanced mechanical stability and proton conductivity performance from the dense Mn(II)-metal–organic framework to porous Mn(II)–Fe(III)-metal–organic framework, Inorg. Chem. 61, 15166−15174 (2022) (通讯作者,影响因子:5.436)
2. Jianing Xu, Lingkong Zhang, Hailun Wang, Y. Gao, T. Wei, Resta A. Susilo, C. Zha, Bin Chen, Hongliang Dong, and Zhiqiang Chen, Phase transitions in amorphous germanium under non-hydrostatic compression, Crystals 12, 898 (2022) (通讯作者,影响因子:2.589)
3. Jiajia Feng, Cong Li, Wen Deng, B. Lin, W. Liu, Resta A. Susilo, Hongliang Dong, Zhiqiang Chen, N. Zhou, X. Yi, X. Z. Xing, F. Ke, Z. Liu, Hongwei Sheng, Z. Shi, and Bin Chen, Superconductivity induced by Lifshitz transition in pristine SnS2 under high pressure, J. Phys. Chem. Lett. 13, 9404−9410 (2022)
4. Xiaoliang Zhang, Weiwei Li, Shun Wan, Jiajia Feng, Meng Song, Junxiu Liu, Gui Wang, Zhiqiang Chen, Bin Chen, Hengzhong Zhang, Pressure dependence of the electrical conductivities of high-entropy diborides, J. Eur. Ceram. Soc. 42, 6951−6957 (2022)
5. Y. Zhao, Hongliang Dong, Zhiqiang Chen, and Y. Deng, Controllably introducing exposed surfaces to nanocrystalline CeO2 catalysts by high-pressure treatment. J. Nanosci. Nanotechnol. 21, 693−697 (2021). (通讯作者,影响因子:1.354)
6. Y. Ren, J. Li, Y. Zhao, J. Ciston, K. Bustillo, R. Zhang, Hongliang Dong, Zhiqiang Chen, A. M. Minor, and Y. Deng, A strain-driven thermotropic phase boundary in BaTiO3 at room temperature by cycling compression. AIP Adv. 11, 115122 (2021) (影响因子:1.548)
7. H. Zhai, T. Gao, X. Zheng, J. Li, B. Chen, Hongliang Dong, Zhiqiang Chen, G. Zhao, S. Cao, C. Cai, and V. V. Marchenkov, Magnetocrystalline anisotropy and dynamic spin reorientation of half-doped Nd0.5Pr0.5FeO3 single crystal. Chin. Phys. B 30, 077502 (2021) (影响因子:1.494)
8. He Li, MingzhiYuan, Dayong Tan, Rest A. Susilo, Hongliang Dong, Zhiqiang Chen, Y. Zhao, Y. Deng, and Bin Chen, Revealing the unusual grain growth of nanoparticles in calcination: oriented attachment in the solid state. CrystEngComm 23, 4152 (2021) (影响因子:3.84)
9. He Li, J. Wang, Resta A. Susilo, Hongliang Dong, Shun Wan, Mingzhi Yuan, J. Liu, H. Wang, Zhiqiang Chen, D. He, and Bin Chen, Grain-size gradient structure by abnormal grain growth. MRS Commun.11, 62−69 (2021) (影响因子:2.62)
10. Y. Wu, P. Nan, Z. Chen, Z. Zeng, S. Lin, X. Zhang, Hongliang Dong, Zhiqiang Chen, H. Gu, W. Li, Y. Chen, B. Ge, and Y. Pei, Manipulation of band degeneracy and lattice strain for extraordinary PbTe thermoelectrics, Research 2020, 8151059 (2020) (影响因子:N/A)
11. Y. Xiao, Y. Wu, P. Nan, Hongliang Dong, Z. Chen, Zhiqiang Chen, Hongkai Gu, B. Ge, W. Li, and Y. Pei, Cu interstitials enable carriers and dislocations for thermoelectric enhancements in n-PbTe0.75Se0.25, Chem 6, 523–537 (2020) (影响因子:22.804)
12. Yu Deng,+* Ruopeng Zhang, Thomas C. Pekin, Christoph Gammer, Jim Ciston, Peter Ercius, Colin Ophus, Karen Bustillo, Chengyu Song, Shiteng Zhao, Hua Guo, Yunlei Zhao, Hongliang Dong, Zhiqiang Chen,+ and Andrew M. Minor,* Functional materials under stress: In situ TEM observations of structural evolution, Adv. Mater. 32, e1906105 (2020) (共同一作,影响因子:30.85)
13. Jianing Xu , Tianlin Huang , Hongliang Dong, Dayong Tan, Zongqiang Feng, Tingcha Wei, Resta A. Susilo, Yanju Wang, Hailun Wang, Mingzhi Yuan, Lingkong Zhang, Shun Wan, Yuanjie Huang, Tiecheng Lu, Yan Chen, Zhiqiang Chen,* and Bin Chen,Structural and mechanical properties of magnesium aluminate nanoceramics under high pressure, Applied Physics Letters 117, 041901 (2020) (通讯作者,影响因子:3.596)
14. J. Chen, Z. Li, Hongliang Dong, Jianing Xu, V. Wang, Zhenjie Feng, Zhiqiang Chen, Bin Chen, N. Chen, and Ho-Kwang Mao, Pressure induced unstable electronic states upon correlated nickelates metastable perovskites as batch synthesized via heterogeneous nucleation, Adv. Funct. Mater. 30, 2000987 (2020) (影响因子:18.81)
15. Y. Wu, P. Nan, Z. Chen, Z. Zeng, R. Liu, Hongliang Dong, L. Xie, Y. Xiao, Zhiqiang Chen, H. Gu, W. Li, Y. Chen, B. Ge, and Y. Pei, Thermoelectric Enhancements in PbTe Alloys Due to Dislocation-Induced Strains and Converged Bands, Ad. Sci. 7, 1902628 (2020) (影响因子:14.39)
16. Jiajia Feng, Resta A. Susilo, B. Lin, Wen Deng, Yanju Wang, B. Li, K. Jiang, Zhiqiang Chen, X. Xing, Z. Shi, C. Wang, and Bin Chen, Achieving room-temperature charge density wave in transition metal dichalcogenide 1T-VSe2, Adv. Electron. Mater. 6, 1901427 (2020) (影响因子:7.295)
17. Y. Deng, C. Gammer, J. Ciston, P. Ercius, C. Ophus, K. Bustillo, C. Song, R. Zhang, D. Wu, Y. Du, Zhiqiang Chen, H. Dong, A. G. Khachaturyan, and A. M. Minor, Hierarchically-structured large superelastic deformation in ferroelastic-ferroelectrics. Acta Mater. 181, 501−509 (2019) (影响因子:8.203)
18. Y. L. Zhao, Zhiqiang Chen, Y. Deng, Synthesis and characterization of flower-like clewed PbTiO3 nanowires prepared by hydrothermal method, Advances in Engineering Research, 181, 226−229 (2019) (影响因子:1.30)
19. X. Zheng, T. Gao, W. Jing, X. Y. Wang, Y. S. Liu, Bin Chen, Hongliang Dong, Zhiqiang Chen, S. X. Cao, C. B. Cai, and V. V. Marchenkov, Evolution of Griffiths phase and spin reorientation in perovskite manganites, J. Magn. Magn. Mater. 491, 165611 (2019) (影响因子:2.993)
20. Bin Chen, Yuanjie Huang, Jianing Xu, Xiaoling Zhou, Zhiqiang Chen, Hengzhong Zhang, J. Zhang, J. Qi, T. Lu, J. F. Banfield, J. Yan, S. V. Raju, A. E. Gleason, S. Clark, and A. A. MacDowell, Revealing the ductility of nanoceramic MgAl2O4, J. Mater. Res. 34, 1489−1498 (2019) (影响因子:2.624)
21. Hajra Saqib, Saqib Rahman, D. Errandonea, Resta A. Susilo, A. Jorge-Montero, P. Rodríguez-Hernández, A. Muñoz, Y. Sun, Zhiqiang Chen, N. Dai, and Bin Chen, Giant conductivity enhancement: Pressure-induced semiconductor-metal phase transition in Cd0.90Zn0.1Te, Phys. Rev. B 99, 094109 (2019) (影响因子:4.036)
22. Y. T. Zou, W. Zhang, X. F. Li, M. N. Ma, X. A. Li, C. H. Wang, B. He, S. M. Wang, Zhiqiang Chen, Y. S. Zhao, and B. S. Li, Pressure-induced anomalies and structural instability in compressed β-Sb2O3, Phys. Chem. Chem. Phys. 20, 11430−11436 (2018) (影响因子:3.676)
23. T. Gao, M. Wu, N. N. Qi, T. Zhou, X. J. Luo, Y. S. Liu, K. Xu, V. V. Marchenkov, Hongliang Dong, Zhiqiang Chen, and Bin Chen, Giant low field magnetocaloric effect and magnetostructural coupling in MnCoGe1-xInx around room temperature, J. Alloys Compd. 753, 149−154 (2018) (影响因子:5.316)
24. Chenping Zhang, Zhiqiang Chen, and Y. Deng, The in situ lattice distortion study on relaxor PMN-PT single-crystal under external loading, J. Nanosci. Nanotechnol.17, 6210–6215 (2017) (通讯作者,影响因子:1.354)
25. Feng Ke, Haini Dong, Y. B. Chen, J. B. Zhang, C. L. Liu, J. K. Zhang, Y. Gan, Y. H. Han, Zhiqiang Chen, C. X. Gao, J. S. Wen, Wenge Yang, Xiao Jia Chen, V. VStruzhkin, Ho-Kwang Mao, and Bin Chen, Decompression driven superconductivity enhancement in In2Se3, Adv. Mater. 29, 1701983 (2017) (影响因子:30.85)
26. Chengping Zhang, Zhiqiang Chen, and Y. Deng, Phase transition and phonon characteristics of PbTiO3 single-crystal nanorods prepared in NaCl flux, Advances in Engineering Research, 5th ICMEME 90, 125–130 (2016) (通讯作者,影响因子:1.30)
27. Chunyu Li, Feng Ke, Qingyang Hu, Zhenhai Yu, J. G. Zhao, Zhiqiang Chen, and Hao Yan, Correlated structural and electronic phase transformations in transition metal chalcogenide under high pressure, J. Appl. Phys.119, 135901 (2016) (影响因子:2.546)
28. T Wu, H Chen, P Gao, T Yu, Z Chen, Z Liu, K H Ahn, X Wang, S-W Cheong, T A Tyson, Pressure dependent structural changes and predicted electrical polarization in perovskite RMnO3, Journal of Physics: Condensed Matter, 28, 056005 (2016) (影响因子:2.333)
29. Z Liu, Z Yao, M Yao, J Lv, S Chen, Q Li, H Lv, T Wang, S Lu, R Liu, B Liu, J Liu, Z Chen, B Zou, T Cui, and B Liu, High-pressure behavior of bromine confined in the one-dimensional channels of zeolite AlPO4-5 single crystals, J. Chem. Phys., 145, 124319 (2016) (影响因子:3.488)
30. Y Zou, X Qi, C Zhang, S Ma, WZhang, Y Li, T Chen, X Wang, Z Chen, D Welch, P Zhu, B Liu, Q Li, T Cui, B Li, Discovery of Superconductivity in Hard Hexagonal ε-NbN, Scientific Reports, 6, 22330 (2016) (影响因子:4.379)
31. X Liu, Z Xiong, S R Shieh, Q He, L Deng, Y Zhang, L Chang, F Wang, X Hong, Z Chen, Non-monotonic compositional dependence of isothermal bulk modulus of the (Mg1–xMnx)Cr2O4 spinel solid solutions, and its origin and implication, Solid Earth Sciences, 1-12 (2016) (影响因子:3.50)
32. C Li, F Ke, Q Hu, Z Yu, J Zhao, Z Chen, H Yan, Correlated structural and electronic phase transformations in transition metal chalcogenide under high pressure, Journal of Applied Physics, 119, 135901 (2016) (影响因子:2.546)
33. S Zhang, K Zhao, X Yu, J Zhu, Q Liu, X Wang, S Feng, Z Chen, Y Zhao, C Jin, Pressure-induced shift of Tc and structural transition in “122” type pnictide superconductor Ca0. 34Na0.66Fe2As2, AIP Advances, 6, 075104 (2016) (影响因子:1.548)
34. H. Zhang, T Yu, Z Chen, C S Nelson, L N Bezmaternykh, A M M Abeykoon, and T A Tyson, Probing magnetostructural correlations in multiferroic HoAl3(BO3)4, Physical Review B, 92, 104108 (2015) (影响因子:4.036)
35. O Rivin, A Broide, S Maskova, M S. Lucas, A Hen, B Gurion, I Orion, S Salhov, M Shandalov, A Moreira, J Molaison, Z Chen, I Halevy, High Pressure Neutron Powder Diffraction Study of Fe1-xCrx with and without Hydrogen Exposure, Hyperfine Interactions, 213, 29 (2015) (影响因子:1.13)
36. H Lv, M yao, Q Li, R Liu, B Liu, Z Yao, D Liu, Z Liu, J Liu, Z Chen, B Zou, T Cui, B Liu, Insertion of N2 into the Channels of AFI Zeolite under High Pressure, Scientific Reports, 5, 13234 (2015) (影响因子:4.379)
37. Xiaoxiang Xi, Xu-Gang He, Fen Guan, Zhenxian Liu, RD Zhong, JA Schneeloch, TS Liu, GD Gu, X Du, Z Chen, XG Hong, Wei Ku, GL Carr Bulk signatures of pressure-induced band inversion and topological phase transitions in Pb1− xSnxSe, Physical review letters, 113 (9), 096401 (2014) (影响因子:9.161)
38. Q Li, H Zhang, B Cheng, R Liu, B Liu, J Liu, Z Chen, B Zou, T Cui, B Liu , Pressure-induced amorphization in orthorhombic Ta2O5: An intrinsic character of crystal, Journal of Applied Physics, 115 (19), 193512 (2014) (影响因子:2.546)
39. M Lang, F Zhang, J Zhang, CL Tracy, AB Cusick, J VonEhr, Z Chen, C Trautmann, R C Ewing, Swift heavy ion-induced phase transformation in Gd2O3, Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, 326, 121-125 (2014) (影响因子:1.377)
40. D Fan, S Wei, M Ma, Z Chen, B Li, H Xie, High-pressure elastic behavior of Ca4La6 (SiO4) 6 (OH) 2 a synthetic rare-earth silicate apatite: a powder X-ray diffraction study up to 9.33 GPa, Physics and Chemistry of Minerals, 41 (2), 85-90, (2014) (影响因子:1.31)
41. X Yang, Q Li, R Liu, B Liu, S Jiang, K Yang, J Liu, Z Chen, B Zou, T Cui , B Liu, A novel pressure-induced phase transition in CaZrO3, CrystEngComm, 16 (21), 4441-4446, (2014) (影响因子:3.40)
42. Q Li, B Cheng, B Tian, R Liu, B Liu, F Wang, Z Chen, B Zou, T Cui, B. Liu, Pressure-induced phase transitions of TiO2 nanosheets with high reactive {001} facets, RSC Advances, 4, 12873 (2014) (影响因子:3.245)
43. Y Chen, X Xi, WL Yim, F Peng, Y Wang, H Wang, Y Ma, G Liu, C Sun, C Ma, Z Chen, H Berger, High-pressure phase transitions and structures of topological insulator BiTeI, The Journal of Physical Chemistry C, 117 (48), 25677-25683 (2013)
44. X Xi, C Ma, Z Liu, Z Chen, W Ku, H Berger, C Martin, D B Tanner, G L Carr,Signatures of a Pressure-Induced Topological Quantum Phase Transition in BiTeI, Physical Review Letters, 111, 155701 (2013) (主要贡献作者)
45. L Chang, Z Chen, X Liu, H Wang, Expansivity and compressibility of wadeite-type K2Si4O9 determined by in situ high T/P experiments, and their implication, Phys Chem Minerals, 40, 29–40 (2013) (主要贡献作者)
46. D Fan, M Ma, S Wei, Z Chen, H Xie, In-situ synchrotron powder X-ray diffraction study of vanadinite at room temperature and high pressure., High Temperatures--High Pressures, 42 (5), 441-449 (2013)
47. D Fan, M Ma, S Wei, Z Chen, H Xie , High Pressure Elastic Behavior of Synthetic Mg3Y2(SiO4)3 Garnet up to 9 GPa, Advances in Materials Science and Engineering 2013, 1-6 (2013)
48. J Zhao, Z Hao, L Ehm, D Dong, Z Chen, G Gu, High-pressure phase transitions, amorphization, and crystallization behaviors in Bi2Se3, Journal of Condensed Matter Physics, 25, 125602 (2013)
49. J Zhao, H Liu, L Ehm, D Dong, Z Chen, Q Liu, W Hu, N Wang, C Jin, Pressure-Induced Phase Transitions and Correlation between Structure and Superconductivity in Iron-Based Superconductor Ce(O0. 84F0. 16)FeAs, Inorganic chemistry, 52(14), 8067-8073 (2013)
50. D Fan, M Ma, S Wei, BS Li, Z Chen, H Xie, In-situ synchrotron X-ray diffraction study of scorodite at high pressure., High Temperatures--High Pressures, 42(3), 203-209 (2013)
51. S Wei, M Ma, D Fan, J Yang, W Zhou, B Li, Z Chen, H Xie, Compressibility of mimetite and pyromorphite at high pressure, High Pressure Research, 33(1), 27-34 (2013)
52. X Yang, Q Li, Z Liu, X Bai, H Song, M Yao, B Liu, R Liu, C Gong, S Lu, Z Chen, B Liu et. al. Pressure-induced amorphization in Gd2O3/Er3+ Nanorods, Journal of Physical Chemistry C, 117(16), 8503-8508 (2013)
53. Q Li, B Cheng, X Yang, R Liu, B Liu, J Liu, Z Chen, B Zou, T Cui, B Liu, Morphology-tuned phase transitions of anatase TiO2 nanowires under high pressure, Journal of Physical Chemistry C, 117(16), 8516-8521 (2013)
54. B Cheng, Q Li, M Yao, R Liu, D Li, B Zou, T Cui, J Liu, Z Chen, Z Zhao et. al., High pressure phase transition of ZnO/SiO2 core/shell nanospheres, Journal of Applied Physics, 113(5), 054314 (2013)
55. C Gong, Q Li, R Liu, Y Hou, J Wang, X Dong, B Liu, X Yang, Z Yao, X Tan, D Li, J Liu, Z Chen, B Zou, T Cui, B Liu, Structural phase transition and photoluminescence properties of YF 3 and YF 3: Eu 3+ under high pressure, Physical Chemistry Chemical Physics, 15(45), 19925-19931 (2013)
56. M Ma, W Liu, Z Chen, Z Liu, B Li, Compression and structure of brucite to 31 GPa from synchrotron X-ray diffraction and infrared spectroscopy studies, American Mineralogist, 98, 33–40 (2013) (主要贡献作者)
57. Q He, X Liu, B Li, L Deng, Z Chen, X Liu, H Wang, Expansivity and compressibility of strontium fluorapatite and barium fluorapatite determined by in situ X-ray diffraction at high-T/P conditions: significance of the M-site cations, Physics and Chemistry of Minerals, 40, 1-12 (2013)
58. F Zhang, M Lang, J Zhang, Z Chen, Z Liu, J Lian, R Ewing, Phase Transition and Abnormal Compressibility of Lanthanide Silicate with the Apatite Structure, Phys. Rev. B: Condens. Matter, 85, 214116 (2012)
59. H Lv, M Yao, Q Li, R Liu, B Liu, S Lu, L Jiang, W Cui, Z Liu, Z Chen, The structural stability of AlPO4-5 zeolite under pressure: Effect of the pressure transmission medium, J. Appl. Phys., 111, 112615 (2012)
60. P Wang, Q Li, R Liu, M Yao, D Li, B Zou, T Cui, J Liu, Z Chen, B Liu, High pressure-induced structural phase transition in hexagonal CeF3 nanoplates, J. Appl. Phys., 111, 112627 (2012)
61. Q Li, R Liu, B Liu, L Wang, K Wang, D Li, B Zou, T Cui, J Liu, Z Chen, Stability and phase transition of nanoporous rutile TiO2 under high pressure, RSC Adv., 2, 9052 (2012)
62. D Fan, M Ma, S Wei, Z Chen, H Xie, Synchrotron X-ray diffraction study of phenacite at high pressure, Chin. Phys. C 36, 179 (2012)
63. Q He, X Liu, X Hu, L Deng, Z Chen, B Li, Y Fei, Solid solutions between lead fluorapatite and lead fluorvanadate apatite: compressibility determined by using a diamond-anvil cell coupled with synchrotron X-ray diffraction, Phys. Chem. Miner., 39, 219 (2012)
64. X Hong, Z Chen, T Duffy, Absolute x-ray Energy Calibration over a Wide Energy Range Using a Diffraction-based Iterative Method, Rev. Sci. Instrum., 83(6), 063901 (2012) (主要贡献作者)
65. D Fan, M Ma, J Yang, S Wei, Z Chen, H Xie, In Situ High-Pressure Synchrotron X-Ray Diffraction Study of Clinozoisite, Chin. Phys. Lett., 28(12), 126103 (2011)
66. H Lv, M Yao, Q Li, Z Li, B Liu, R Liu, S Lu, D Li, J Mao, X Ji, J Liu, Z Chen, B Zou, T Cui, B Liu, Effect of Grain Size on Pressure-Induced Structural Transition in Mn3O4, J. Phys. Chem. C, 116(3), 2165-2171 (2011)
67. J Zhao, H Liu, L Ehm, Z Chen, S Sinogeikin, Y Zhao, G Gu, Pressure Induced Disordered Substitution Alloy in Sb2Te3, Inorg. Chem., 50(22), 11291-11293 (2011)
68. X Liu, Q He, L Deng, S Zhai, X Hu, B Li, L Zhang, Z Chen, L Qiong, Equation of State of CAS Phase to Pressure of the Uppermost Lower Mantle at Ambient Temperature, Sci. China-Earth Sci., 54(9), 1394-1399 (2011)
69. P Gao, Z Chen, T Tyson, T Wu, K Ahn, Z Liu, R Tappero, S Kim, S Cheong, High-pressure Structural Stability of Multiferroic Hexagonal RMnO3 (R=Y, Ho, Lu), Phys. Rev. B: Condens. Matter., 83, 224113 (2011) (主要贡献作者)
70. I Halevy, A Hen, A Broide, ML Winterrose, S Zalkind, Z Chen, High-pressure irreversible amorphization of La 1/3 NbO 3, Journal of Modern Physics, 2(05), 323 (2011)
71. X Zou, C Gong, B Liu, Q Li, Z Li, B Liu, R Liu, J Liu, Z Chen, et al., X-ray Diffraction of Cubic Gd2O3/Er under High Pressure, Phys. Status Solidi B, 248(5), 1123-1127 (2011)
72. Q Liu, X Yu, X Wang, Z Deng, Y Lv, J Zhu, S Zhang, H Liu, W Yang, Z Chen, et al., Pressure-Induced Isostructural Phase Transition and Correlation of FeAs Coordination with the Superconducting Properties of 111-Type Na1-xFeAs, J. Am. Chem. Soc., 133, 7892–7896 (2011)
73. L Ehm, L Borkowski, J Parise, S Ghose, Z Chen, Evidence of Tetragonal Nanodomains in the High Pressure Polymorph of BaTiO3, Appl. Phys. Lett., 98(2), 021901 (2011)
74. I Halevy, A Hen, A Broide, ML Winterrose, S Zalkind, Z Chen, High-Pressure Irreversible Amorphization of La1/3NbO3, Journal of Modern Physics, 2(5) (2011)
75. Z Li, B Liu, S Yu, J Wang, Q Li, B Zou, T Cui, Z Liu, Z Chen, The Study of Structural Transition of ZnS Nanorods under High Pressure, J. Phys. Chem. C, 115, 357-361 (2011)
76. B Liu, M Yao, B Liu, Z Li, R Liu, Q Li, D Li, B Zou, T Cui, G Zou, J Liu, Z Chen, High-Pressure Studies on CeO2 Nano-Octahedrons with a (111)-Terminated Surface, J. Phys. Chem. C, 115, 4546-4551 (2011)
77. W Liu, Q Jie, Q Li, Z Chen, B Li, Synchrotron X-ray Study of Filled Skutterudites CeFe4Sb12 and Ce0.8Fe3CoSb12, Physica B, 406(1), 52-55 (2011)
78. D Fan, M Ma, W Zhou, S Wei, Z Chen, H Xie, X-ray Diffraction Study of Arsenopyrite at High Pressure, Phys. Chem. Miner., 38(2), 95 (2011)
79. L Ehm, M Vaughan, T Duffy, Z Liu, L Wang, B Li, D Weidner, Z Chen, S Ghose, High-Pressure Research at the National Synchrotron Light Source, Synchrotron Radiation News, 23(3), 24-30 (2010)
80. Z Chen, T Tyson, K Ahn, Z Zhong, J Hu, Origin of the Non-linear Pressure Effects in Perovskite Manganites: Buckling of Mn–O–Mn Bonds and Jahn–Teller Distortion of the MnO6 Octahedra Induced by Pressure, J. Magn. Magn. Mater., 322, 3049-3052 (2010)(第一作者)
81. T. A. Tyson, Z. Chen, Q. Jie, Q. Li and J. J. Tu, Local structure of thermoelectric Ca3Co4O9, Phys. Rev. B: Condens. Matter., 79, 024109 (2009) (主要贡献作者)
82. T. A. Tyson, Z. Chen, M. Deleon, et al, Local Structure of multiferroic RMn2O5: Important role of the R site, J. Magn. Magn. Mater., 321, 1714-1718 (2009) (主要贡献作者)
83. C Cui, T Tyson, Z Chen, Z Zhong, Transport and Structural Study of Pressure-induced Magnetic States in Nd0.55Sr0.45MnO3 and Nd0.5Sr0.5MnO3, Phys. Rev. B: Condens. Matter., 68(21), 214417 (2003) (主要贡献作者)
84. Pu L, Chen ZQ, Tan C, et al., Microstructural models of alumina nanotubes and anodic porous alumina film formed in sulphuric acid, Chinese Physics Letters, 19 (3), 391-394 (2002) (主要贡献作者)
85. Feng Li, Liying Chen, Zhiqiang Chen, et al., Two-Step Solid-state synthesis of tin oxide and its gas-sensing property, Materials Chemistry and Physics, 73, 335-338 (2002)
86. Ma Guo-bin, Chen Zhi-qiang, et al.,HRTEM Study on microstructures of a-PbO2-type TiO2 nanocrystals, Journal of Chinese Electron Microscopy Society, Vol.19 No.4, 421(2002)
87. Zhu Jianmin, Ma Guo-bin, Chen Zhi-qiang, et al., HRTEM Study on 3D self-assembly of complex oxide nanoparticles, Journal of Chinese Electron Microscopy Society, Vol.19 No.4, 423 (2002)
88. Chen Zhi-qiang, Jian-min Zhu, et al., HRTEM Study on CdSe/HgSe/CdSe QDQW, Journal of Chinese Electron Microscopy Society, Vol.19 No.4, 401 (2002) (第一作者)
89. Chen Zhi-qiang, Jian-min Zhu, et al., HRTEM Study on Nuclear Shell Microstructure of CdSe/HgSe/CdSe Quatumn Dot Quantum Well, Journal of Synthetic Crystals, Vol.29 No.5, 253 (2002) (第一作者)
90. Chen Zhi-qiang, Zhu Jian-min, et al., TEM study on Ultrasonic-Hydrothermal Preparation of Submicron Sphere CdSe, Journal of Chinese Electron Microscopy Society, Vol.19 No.5, 619-620 (2002) (第一作者)