石彦彪(Shi Yanbiao)
博士后

									

研究方向

1. 半导体光催化

2. 铁环境化学

3. 海水资源化利用

个人简历

2021–07 至今,bta365-365app下载手机版【在线注册】,bta365,博士后

2017–09至2021–06,华中师范大学,化学学院,博士

2014–09至2017–06,西北师范大学,化学化工学院,硕士

2010–09至2014–06,西北师范大学,化学化工学院,学士

代表性论著

1. Y. Shi#, J. Li#*, C. Mao#, S. Liu, X. Wang, X. Liu, S. Zhao, X. Liu, Y. Huang, L. Zhang*. Van Der Waals gap-rich BiOCl atomic layers realizing efficient, pure-water CO2-to-CO photocatalysis. Nat. Commun. 2021, 12, 5923.

2. Y. Shi#, G. Zhan#, H. Li,* X. Wang, X. Liu, L. Shi, K. Wei, C. Ling, Z. Li, H. Wang, C. Mao, X. Liu, L. Zhang*. Simultaneous manipulation of bulk excitons and surface defects for ultra-stable and highly-selective CO2 photoreduction. Adv. Mater. 2021, 2100143.ESI高被引论文

3. Y. Shi, X. Wang, X. Liu, C. Ling, W. Shen, L. Zhang*. Visible light promoted Fe3S4 Fenton oxidation of atrazine. Appl. Catal. B-Environ. 2020, 277, 119229.

4. Y. Shi, Z. Yang, L. Shi, H. Li*, X. Liu, X. Zhang, J. Cheng, C. Liang, S. Cao, F. Guo, X. Liu, Z. Ai, L. Zhang*. Surface boronizing can weaken excitonic effects of BiOBr nanosheets for efficient O2 activation and selective NO oxidation under visible light irradiation. Environ. Sci. Technol. 2022, 56, 14478-14486.

5. H. Li#, H. Zhu#, Y. Shi#, H. Shang, L. Zhang, J. Wang*. Vacancy-rich and porous NiFe-layered double hydroxide ultrathin nanosheets for efficient photocatalytic NO oxidation and storage. Environ. Sci. Technol. 2022, 56, 1771-1779.#共同一作

6. Y. Shi, H. Li*, C. Mao, G. Zhan, Z. Yang, C. Lin, K. Wei, X. Liu, Z. Ai, L. Zhang*. Manipulating excitonic effects in layered bismuth oxyhalides for photocatalysis. ACS EST Engg. 2022, 2, 957-974.

7. Y. Shi, C. Zhang, Z. Yang, X. Liu, X. Zhang, C. Ling, J. Cheng, C. Liang, C. Mao*, L. Zhang*. Interfacial electrostatic field boosted excitons dissociation of phosphorylated BiOBr for efficient O2 activation and chlorobenzene degradation. J. Phys. Chem. C 2022, 126, 21847-21856.

8. Y. Shi, Z. Yang, Y. Liu, J. Yu, F. Wang, J. Tong, B. Su, Q. Wang*. Fabricating a g-C3N4/CuOx heterostructure with tunable valence transition for enhanced photocatalytic activity. RSC Adv. 2016, 6, 39774-39783.

科研项目

第71批博后面上资助, 2022M712049, 2022.01-2023.06, 主持

华中师范大学2020年优秀博士学位论文培育计划项目(2020YBZZ020),主持。

荣获奖项

1、华中师范大学2020-2021年度优秀博士学位论文

2、bta365-365app下载手机版【在线注册】2021年度“晨星博士后激励计划”资助

3、2016年,研究生国家奖学金

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