肖良平
日期:2025-05-20 阅读次数: 作者: 来源:


名:

肖良平

别:

称:

讲师

历:

博士研究生

务:


话:


业:

物理化学

电子邮件:

lpxiao@fzu.edu.cn

研究方向:

原位电镜与电催化


http://c.fzu.edu.cn/themes/11999/final/images/teacher_33.gif教育工作经历

2010 – 2014    厦门大学材料科学与工程系 本科

2014 – 2017    厦门大学化学工程与生物工程系 硕士

2017 – 2021    厦门大学化学系 博士

2021 – 2023    厦门大学物理学系 博士后

2025 至今 福州大学化学学院分子工程+研究院 讲师


http://c.fzu.edu.cn/themes/11999/final/images/teacher_33.gif教学简介



http://c.fzu.edu.cn/themes/11999/final/images/teacher_33.gif科研简介

科研领域主要涉及:
1.
原位电子显微学  
2.
电催化(CO2RRHEROER等)

3. 二维材料及异质结的制备与运用


   
Sci. Adv.Adv. Funct. Mater.Appl. Catal. B J. Energy Chem.等学术刊物上发表学术论文40余篇


http://c.fzu.edu.cn/themes/11999/final/images/teacher_33.gif社会兼职


http://c.fzu.edu.cn/themes/11999/final/images/teacher_33.gif科研项目


http://c.fzu.edu.cn/themes/11999/final/images/teacher_33.gif代表性论文

1. Xiao, L. P.; Zheng, Q. Z.; Luo, S. W.; Ying, Y. F.; Zhou, R. S.; Zhou, S. Y.; Li, X. Y.; Ye, X. Y.; Yu, Z. Y.; Xu, Q. C.; Liao, H. G.; Xu, J., Pd-intercalated black phosphorus: An efficient electrocatalyst for CO2 reduction. Sci. Adv. 2024, 10 (25), adn2707. ARTN eadn2707. 10.1126/sciadv.adn2707.

2. Xiao, L.; Li, G.; Yang, Z.; Chen, K.; Zhou, R.; Liao, H.; Xu, Q.; Xu, J., Engineering of Amorphous PtOx Interface on Pt/WO3 Nanosheets for Ethanol Oxidation Electrocatalysis. Adv. Funct. Mate. 2021, 31 (28), 2100982. 10.1002/adfm.202100982.

3. Xiao, L.; Wang, G.; Huang, X.; Zhou, S.; Zhou, R.; Jiang, Y.; Liu, S.; Li, G.; Zheng, H.; Sun, S.-G.; Liao, H.-G., Efficient CO2 reduction MOFs derivatives transformation mechanism revealed by in-situ liquid phase TEM. Appl. Catal. B: Environ. 2022, 307, 121164. 10.1016/j.apcatb.2022.121164.

4. Xiao, L.; Zheng, Q.; Zhou, R.; Liu, S.; Zhao, Y.; Zhao, Y.; Zhou, R.; Ostrikov, K. K., Plasma-assisted synthesis of porous bismuth nanosheets for electrocatalytic CO2-to-formate reduction. J. Energy Chem. 2024, 94, 19-28. 10.1016/j.jechem.2024.02.023.

5. Xiao, L. P.; Zhou, R. S.; Zhang, T. Q.; Wang, X. X.; Zhou, R. W.; Cullen, P. J.; Ostrikov, K., Porous Indium Nanocrystals on Conductive Carbon Nanotube Networks for High-Performance CO2-to-Formate Electrocatalytic Conversion. Energy Environ. Mater. 2023, e12656. ARTN e12656. 10.1002/eem2.12656.

6. Xiao, L.; Liu, X.; Zhou, R.; Zhang, T.; Zhou, R.; Ouyang, B.; Kan, E.; Cullen, P. J.; Ostrikov, K.; Tu, X., Facile synthesis of high-performance indium nanocrystals for selective CO2-to-formate electroreduction. Energ. Convers. Manage. 2021, 231. 10.1016/j.enconman.2021.113847.

7. Xiao, L.; Zhu, A.; Xu, Q.; Chen, Y.; Xu, J.; Weng, J., Colorimetric Biosensor for Detection of Cancer Biomarker by Au Nanoparticle-Decorated Bi2Se3 Nanosheets. ACS Appl. Mater. Interfaces 2017, 9 (8), 6931-6940. 10.1021/acsami.6b15750.

8. Li, X.#; Xiao, L.#; Zhou, L.; Xu, Q.; Weng, J.; Xu, J.; Liu, B., Adaptive Bifunctional Electrocatalyst of Amorphous CoFe Oxide @ 2D Black Phosphorus for Overall Water Splitting. Angew. Chem. Int. Ed. 2020, 59 (47), 21106-21113. 10.1002/anie.202008514.

9. Zhang, J. Y.; Xiao, L. P.*; Lu, M.*, liquid-phase transmission electron microscopy for two-dimensional energy materials. Sci. China Chem. 2025, 68 (2), 414-429. 10.1007/s11426-024-2262-8.

10. Li, P. W.; Han, J. B.; Chen, K.; Xiao, L. P.*; Xu, Q. C.*; Xu, J.*, A "flotation" strategy for tailoring the solid electrolyte interphase on 3D composite Li anodes. Inorg. Chem. Front. 2024, 11 (13), 3765-3776. 10.1039/d4qi00632a.

11. Liu, X.; Xiao, L.; Weng, J.; Xu, Q.; Li, W.; Zhao, C.; Xu, J.; Zhao, Y., Regulating the reactivity of black phosphorus via protective chemistry. Sci. Adv. 2020, 6, eabb4359. 10.1126/sciadv.abb4359.

12. Peng, X.; Zhu, F. C.; Jiang, Y. H.; Sun, J. J.; Xiao, L. ; Zhou, S.; Bustillo, K. C.; Lin, L. H.; Cheng, J.; Li, J. F.; Liao, H. G.; Sun, S. G.; Zheng, H., Identification of a quasi-liquid phase at solid-liquid interface. Nat. Commun. 2022, 13 (1), 3601. 10.1038/s41467-022-31075-z.

13. Chen, P.; Tang, Z.; Zeng, Z.; Hu, X.; Xiao, L.; Liu, Y.; Qian, X.; Deng, C.; Huang, R.; Zhang, J.; Bi, Y.; Lin, R.; Zhou, Y.; Liao, H.; Zhou, D.; Wang, C.; Lin, W., Machine-Learning-Guided Morphology Engineering of Nanoscale Metal-Organic Frameworks. Matter 2020, 2 (6), 1651-1666. 10.1016/j.matt.2020.04.021.


http://c.fzu.edu.cn/themes/11999/final/images/teacher_33.gif获奖情况

厦门大学优秀共青团员


http://c.fzu.edu.cn/themes/11999/final/images/teacher_33.gif其他



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