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何江
研究助理教授
研究助理教授
hej6@sustech.edu.cn

教育背景:
2016.10–2020.11  维尔茨堡大学  无机化学  博士
2011.09–2014.07  厦门大学      有机化学  硕士
2006.09–2010.06  齐齐哈尔大学  制药工程  学士

工作经历:
2025.04–至今     南方科技大学   研究助理教授
2022.04–2025.03  深圳大学      博士后
2021.06–2022.02  南方科技大学  研究学者
2014.12–2016.10  南方科技大学  研究助理

荣誉及奖励:
2020 深圳市海外高层次人才引进“孔雀计划”C类人才


研究方向:

·含硼小分子药物开发

·芳香稠合borole的设计与合成,侧重于其电化学,光化学性质研究。现阶段对于缺电子杂环稠合的borole更为感兴趣
·研究给体-受体化合物的光学及其电化学性质。现阶段特别是对于具有热活化延迟荧光的给体-受体化合物产生浓厚兴趣
·杂原子掺杂的多环芳香化合物
·缺电性有机阳离子化合物


发表论文:

(1) J. He, S. M. Wang, X. F. Song, X. Y. Chang, C. Zou, W. Lu, K. Li, Tetradentate carbene-anilido boron complexes: highly fluorescent dyes with larger stokes shifts than BODIPY dyes. Chem. Commun. 2024, 60, 11524‒11527.
(2) J. He, X. Y. Chang, C. Zou, Y. Q. Yu, S. Han, C. F. Wu, S. Ou, W. Lu, K. Li, Tunable Yellow to Near-Infrared Fluorescent Boron-Amino-Chelating Complexes with Stokes Shifts >100 nm. J. Org. Chem. 2023, 88, 14836‒14841.
(3) J. He, F. Rauch, A. Friedrich, J. Krebs, I. Krummenacher, R. Bertermann, J. Nitsch, H. Braunschweig, M. Finze, T. B. Marder, Phenylpyridyl-fused Boroles: A Unique Coordination Mode and Weak B–N Coordination-Induced Dual Emission, Angew. Chem. Int. Ed. 2021, 60, 4833–4840. (Designated as a Hot Paper)
(4) J. He, F. Rauch, M. Finze, T. B. Marder, (Hetero)Arene-fused boroles: a broad spectrum of applications, Chem. Sci. 2021, 12, 128–147.
(5) J. He, F. Rauch, I. Krummenacher, H. Braunschweig, M. Finze, T. B. Marder, Two Derivatives of Phenylpyridyl-fused Boroles with Contrasting Electronic Properties: Decreasing and Enhancing the Electron Accepting Ability, Dalton Trans. 2021, 50, 355–361.
(6) J. He, F. Rauch, A. Friedrich, D. Sieh, T. Ribbeck, I. Krummenacher, H. Braunschweig, M. Finze, T. B. Marder, N-Heterocyclic Olefins as Electron Donors in Combination with Triarylborane Acceptors: Synthesis, Optical and Electronic Properties of D-π-A Compounds, Chem. Eur. J. 2019, 25, 13777–13784.
(7) X. Zheng, J. He, H.-H. Li, A. Wang, X.-J. Dai, A.-E Wang, P.-Q. Huang, Umpolung of Amide-based Mannich-Type Reaction: Titanocene(III)-catalyzed Three-Component Reaction of Secondary Amides, Aldehydes and Electrophilic Alkenes, Angew. Chem. Int. Ed. 2015, 54, 13739–13742. (Supervisor is the first author)