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简  历

基本信息                                                                                             

名: 廖伟强                                                                               

别:

称: 教授/博导

位: 博士

业: 材料物理与化学

研究方向: 分子铁电材料

电子邮箱: liaowq@ncu.edu.cn                                           

教育工作经历

2008.092012.07 宜春学院化学与生物工程学院应用化学专业 ,获学士学位

2012.092017.03 东南大学化学化工学院材料物理与化学专业,获博士学位

2015.112017.01 美国托莱多大学物理与天文系,访问学者

2017.032018.05 东南大学化学化工学院 ,助理研究员

2018.06至今 南昌大学国际有序物质科学研究院,校聘教授


科研概况

主要从事分子铁电体的设计合成与性能研究,代表性成果包括:(1)构筑了大压电响应分子铁电体;(2)发现具有准同型相界的分子铁电固溶体;(3)合成了分子铁电半导体。以一作或通讯编辑身份在 Science(2 篇)、J. Am. Chem. Soc.(6篇)、Angew. Chem. Int. Ed. (2 篇)、Adv. Mater.(2 篇)、Nat. Commun.(1 篇)、PNAS(1篇)等国际知名期刊上发表论文40余篇。

博士生导师:面向化学专业招生

硕士生导师:面向化学专业招生

科研项目

主持国家自然科学基金2项入选第四届中国科协青年人才托举工程江西省双千计划首批培养类项目江西省青年井岗学者奖励计划

代表性论文

  1. Homochiral Nickel Nitrite ABX(X=NO) Perovskite Ferroelectrics. B.-B. Deng, C.-C. Xu, T.-T. Cheng, Y.-T. Yang, Y.-T. Hu, P. Wang, W.-H. He, M.-J. Yang and W.-Q. Liao,* J. Am. Chem. Soc., 2020, 142, 6946?6950.

  2. A molecular perovskite solid solution with piezoelectricity stronger than lead zirconate titanate. W.-Q. Liao, D. Zhao, Y.-Y. Tang, Y. Zhang, P.-F. Li, P.-P. Shi, X.-G. Chen, Y.-M. You and R.-G. Xiong,* Science, 2019, 363, 1206–1210.

  3. The First Molecular Thermochromic Ferroelectric. J.-C. Liu, W.-Q. Liao,* P.-F. Li,* Y.-Y. Tang, X.-G. Chen, X.-J. Song, H.-Y. Zhang, Y. Zhang, Y.-M. You and R.-G. Xiong,* Angew. Chem. Int. Ed., 2020, 59, 3495–3499.

  4. An organic-inorganic perovskite ferroelectric with large piezoelectric response. Y.-M. You,# W.-Q. Liao,# D. Zhao,# H.-Y. Ye, Y. Zhang, Q. Zhou, X. Niu, J. Wang, P.-F. Li, D.-W. Fu, Z. Wang, S. Gao, K. Yang, J.-M. Liu, J. Li,* Y. Yan* and R.-G. Xiong,* Science, 2017, 357, 306–309.

  5. The First 2D Homochiral Lead Iodide Perovskite Ferroelectrics: [R ‐ and S ‐1‐(4‐Chlorophenyl)ethylammonium]2PbI4. C.-K. Yang, W.-N. Chen, Y.-T. Ding, J. Wang, Y. Rao, W.-Q. Liao,* Y.-Y. Tang, P.-F. Li, Z.-X. Wang and R.-G. Xiong,* Adv. Mater., 2019, 31, 1808088.

  6. A Room-Temperature Hybrid Lead Iodide Perovskite Ferroelectric. X.-N. Hua, W.-Q. Liao,* Y.-Y. Tang, P.-F. Li, P.-P. Shi, D. Zhao and R.-G. Xiong,* J. Am. Chem. Soc., 2018, 140, 12296-12302.

  7. Highest-Tc organic enantiomeric ferroelectrics obtained by F/H substitution. Y. Ai,* D.-J. Wu, M.-J. Yang, P. Wang, W.-H. He and W.-Q. Liao,* Chem. Commun., 2020, DOI: 10.1039/d0cc02547j.

  8. A Chiral Thermochromic Ferroelastic with Seven Physical Channel Switches. R.-G. Xiong,* S.-Q. Lu, Z.-X. Zhang, H. Cheng, P.-F. Li,* and W.-Q. Liao,* Angew. Chem. Int. Ed., 2020, 59, 9574–9578.

  9. A high temperature optic-electric duple switching organic ionic compound: 1,4,7-triazoniacyclononane tetrafluoroborate dichloride. J.-X. Gao, X.-N. Hua, X.-G. Chen and W.-Q. Liao,* J. Mater. Chem. C, 2019, 7, 5348–5352.

  10. Competitive Halogen Bond in the Molecular Ferroelectric with Large Piezoelectric Response. W.-Q. Liao, Y.-Y. Tang, P.-F. Li, Y.-M. You* and R.-G. Xiong, J. Am. Chem. Soc., 2018, 140, 3975–3980.

  11. Large Piezoelectric Effect in a Lead-Free Molecular Ferroelectric Thin Film. W.-Q. Liao, Y.-Y. Tang, P.-F. Li, Y.-M. You* and R.-G. Xiong,* J. Am. Chem. Soc., 2017, 139, 18071?18077.

  12. Lead‐Free Inverted Planar Formamidinium Tin Triiodide Perovskite Solar Cells Achieving Power Conversion Efficiencies up to 6.22%. W.-Q. Liao, D. Zhao,* Y. Yu, C. R. Grice, C. Wang, A. J. Cimaroli, P. Schulz, W. Meng, K. Zhu, R.-G. Xiong* and Y. Yan,* Adv. Mater., 2016, 28, 9333–9340.

  13. Fabrication of Efficient Low-Bandgap Perovskite Solar Cells by Combining Formamidinium Tin Iodide with Methylammonium Lead Iodide. W.-Q. Liao, D. Zhao,* Y. Yu, N. Shrestha, K. Ghimire, C. R. Grice, C. Wang, Y. Xiao, A. J. Cimaroli, R. J. Ellingson, N. J. Podraza, K. Zhu, R.-G. Xiong* and Y. Yan, * J. Am. Chem. Soc., 2016, 138, 12360?12363.

  14. A lead-halide perovskite molecular ferroelectric semiconductor. W.-Q. Liao, Y. Zhang, C. L. Hu, J. G. Mao, H. Y. Ye, P. F. Li, S. D. Huang and R.-G. Xiong,* Nat. Commun., 2015, 6, 7338.

  15. Organic enantiomeric high-Tc ferroelectrics. P.-F. Li,# W.-Q. Liao, # Y.-Y. Tang, # W. Qiao,# D. Zhao,* Y. Ai, Y.-F. Yao* and R.-G. Xiong,* Proc. Natl. Acad. Sci. USA., 2019, 116, 5878–5885.


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