姓名:肖晖 职称职务:副教授/硕士生导师 学科专业: 分析化学
出生年月: 1992年12月 办公室: 新校区综合实验楼E-509 Email: xiaohui3@nwnu.edu.cn
【个人简介】
2015年6月毕业于兰州大学化学化工学院,获工学学士学位。2020年7月毕业于中国科学院大学(中科院福建物质结构研究所),获理学博士学位,2020-2022年南方科技大学博士后研究工作,2022年9月加入西北师范大学化学化工学院。在国际高水平SCI期刊发表学术论文30余篇,其中以第一作者(含共一)发表于 Advanced Functional Materials、Angewandte Chemie International Edition、Journal of American Chemical Society 等期刊,总引用达800余次。
【研究领域】
1、有机光致/电致发光材料及器件;
2、金属-有机配合物光电材料;
3、小分子自组装层设计与光电化学应用。
【承担的研究项目】
西北师范大学青年教师科研能力提升计划(骨干)项目,主持
高校教师创新基金项目,主持
甘肃省自然科学基金,主持
国家自然科学基金面上基金项目,参与
【代表性论文】
1. Hui Xiao#, Yali Wang#, Yaqi Zhao#, Rongfang Zhang, Kainan Kang, Yanjun Feng, Yuling Gao, Huixia Guo, Bingzhang Lu*, Peiyao Du * and Xiaoquan Lu *, Insight into the charge transfer behavior of an electrochemiluminescence sensor based on porphyrin–coumarin derivatives with a donor–acceptor configuration, Chem. Sci., 2024,15, 16681-16687.
2. Jintong Song*,#, Rui Zeng#, Hui Xiao#, Hailiang Ni, Zong-Xiang Xu* & Haifeng Xiang*, Multicolor circularly polarized phosphorescence of axially chiral binuclear platinum(II) complexes, Sci. China Chem. 2024, 67, 3757–3766. (Co-first)
3. Hui Xiao, Jin-Yun Wang, Li-Yi Zhang, Lin-Xi Shi, Zhao-Yi Wang, and Zhong-Ning Chen*, Naphthalimide-Modified Clusters for Red-Emitting Devices with High Color Purity, Inorg. Chem. 2024, 63, 17157-17165.
4. Huiqin Ye #, Hui Xiao#, Rongfang Zhang, Shengya Zhang, Ze Wang, Wei Luo, Ruixiu Xie, Yanjun Feng and Xiaoquan Lu *, Photogenerated charge separation at BiVO4 photoanodes enhanced by a Ag-modified porphyrin polymer skeleton, Dalton Trans., 2023, 52, 10911. (Co-first)
5. Chang-Hui Yang #, Shang-Biao Xiao #, Hui Xiao #, Liang-Jin Xu* Zhong-Ning Chen,Efficient Red-Emissive Circularly Polarized Electroluminescence Enabled by Quasi-2D Perovskite with Chiral Spacer Cation, ACS Nano 2023, 17, 8, 7830–7836. (Co-first)
6. Pengfei Xie #, Hui Xiao #, Ying Qiao , Geping Qu , Jiangzhao Chen *, Xiaoyuan Liu *, Zong-Xiang Xu*, Radical reinforced defect passivation strategy for efficient and stable MAPbI3 perovskite solar cells fabricated in air using a green anti-solvent process, Chem. Eng. J. 2023, 462, 142328. (Co-first)
7. Lang Qu #, Hui Xiao #, Bao Zhang, Qingping Yang, Jintong Song, Xiangge Zhou, ZongXiang Xu*, Haifeng Xiang*, Axially chiral biphenoxazine-based thermally activated delayed fluorescence materials for solution-processed circularly polarized organic light-emitting diodes, Chem. Eng. J. 2023, 471, 144709. (Co-first)
8. Jintong Song #,* Hui Xiao #, Bao Zhang, Lang Qu, Xiangge Zhou, Ping Hu, Zong-Xiang Xu*, and Haifeng Xiang*, Metal-Induced Planar Chirality of Soft-Bridged Binuclear Platinum(II) Complexes: 100% Phosphorescence Quantum Yields, Chiral Self-Sorting, and Circularly Polarized Luminescence, Angew. Chem. Int. Ed. 2023, 62, e202302011. (Co-first)
9. Chang-Hui Yang #, Hui Xiao #, Yu-Feng Sang #, Jian Luo, Shang-Biao Xiao, Hong-Li Xuan, Qing-Rong Ding, Wenlie Lin, Zong-Xiang Xu*, Zhong-Ning Chen*, and Liang-Jin Xu*, In Situ Formed Perovskite Nanocrystal Films Toward Efficient Circularly Polarized Electroluminescence, Adv. Funct. Mater. 2023, 2310500. (Co-first)
10. Hui Xiao, Da-Sheng Zheng, Li-Yi Zhang, Liang-Jin Xu*, and Zhong-Ning Chen*, Ultra-Long Room Temperature Phosphorescence with the Efficiency Over 64% Induced by 1‰ Impurity Doping, Adv. Funct. Mater. 2023, 2214241.
11. Jintong Song#, Hui Xiao#, Lizhi Fang, Lang Qu, Xiangge Zhou, Zong-Xiang Xu*, Cheng Yang*, and Haifeng Xiang*, Highly Phosphorescent Planar Chirality by Bridging Two SquarePlanar Platinum(II) Complexes: Chirality Induction and Circularly Polarized Luminescence, J. Am. Chem. Soc. 2022, 144, 2233−2244. (Co-first)
12. Lei Wang#, Hui Xiao#, Lang Qu, Jintong Song, Weilan Zhou, Xiangge Zhou, Haifeng Xiang*, and Zong-Xiang Xu *, R Axially Chiral Bis-Cycloplatinated Binaphthalenes and OctahydroBinaphthalenes for Efficient Circularly Polarized Phosphorescence in Solution-Processed Organic Light-Emitting Diodes, Inorg. Chem. 2021, 60, 13557−13566. (Co-first)
13. Hui Xiao, Xu Zhang, Jin-Yun Wang, Li-Yi Zhang, Qian-Chong Zhang, and Zhong-Ning Chen*, Enhancing Phosphorescence through Rigidifying the Conformation to Achieve High-Efficiency OLEDs by Modified PEDOT, ACS Appl. Mater. Interfaces 2019, 11, 45853−45861.
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