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江俊
2023-05-16 13:15
  • 江俊
  • 江俊 - 教授 博导-中国科学技术大学-合肥微尺度物质科学国家研究中心-个人资料

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资料介绍

个人简历


江俊博士1978年出生于中国湖南省,现为中国科学技术大学化学与材料科学学院教授(2011/12--),博士生导师。2000年获武汉大学物理系人才基地班理论物理学士学位,2007年获瑞典皇家工学院理论化学博士学位(导师罗毅教授),2008年获中国科学院上海技术物理研究所微电子与固体电子学博士学位(导师陆卫教授)。此后在瑞典皇家工学院(合作导师罗毅教授)与美国加州大学尔湾分校(合作导师Shaul Mukamel院士)从事博士后研究并于2010-2011年任助理研究员。担任两届中科大少年班学院班主任,指导学生获多项国际大奖。2011年入选中组部青年高层次人才并加入中国科学技术大学化学与材料科学学院,2013年获批国家科技部青年973项目负责人并于2018年获结题优秀,2020年获自然科学基金委杰出青年基金资助。\r
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江俊博士主要从事理论化学研究,发展融合人工智能与大数据技术的量子化学方法,聚焦于复杂体系内电子运动模拟,研究在多个物理与化学应用领域(能源催化、功能材料、光化学、谱学)中的实际问题。在国际知名SCI期刊如Nat. Energy, Nat. commun., J. Am. Chem. Soc., Angew. Chem. Int. Ed., Phys. Rev. Lett., Adv. Mater. and Nano Lett等发表论文150余篇。在量子器件和新村料领域获专利10余项。主持开发6个计算软件包在国内外研究机构和产业应用,为企业创造产值近亿元。曾获2011年中科院优秀博士论文奖、2015年中国化学会唐敖庆青年理论化学家奖、2017年安徽省青年科技奖、2020年日本化学会亚洲杰出讲座奖(人工智能在理论化学中的应用)。

研究领域


"""""本课题组的研究聚焦于复杂体系内电子运动行为的理论模拟。通过研究解决多个物理与化学应用领域(光催化、生物化学、光化学、分子电子学与光子学)中的实际科学问题,结合量子化学与人工智能技术,发展和应用多尺度的基础理论方法,揭示功能分子、复合材料、生物系统等复杂体系的构效关系、微观机制和协同原理。"

近期论文


W. Li, Cong Liu, C.K. Gu, J.-H. Choi, S. Wang*, J. Jiang*, Interlayer Charge Transfer Regulates Single-Atom Catalytic Activity on Electride/Graphene 2D Heterojunctions, J. Am. Chem. Soc. 145 (2023) 4774-4783.\r
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H.T. Zhao*, W. Chen, H. Huang, Z.H. Sun, Z.J. Chen, L.J. Wu, B.C. Zhang, F.M. Lai, Z. Wang, M. L. Adam, C.H. Pang, P. K. Chu, Y. Lu, T. Wu, J. Jiang*, Z.Y. Yin*, X.F. Yu*, A robotic platform for the synthesis of colloidal nanocrystals, Nature Synthesis ?? (2023) DOI: 10.1038/s44160-023-00250-5\r
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M. Hu, Ye, K. Ye, G.Z. Zhang, X.Y. Li*, J. Jiang*, Insight into the Mechanism for Catalytic Activity of Oxygen/Hydrogen Evolution Reaction on Dual-site Catalyst, J. Phys. Chem. Lett. 14 (2023) 2201-2207.\r
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M. Eshete, X.Y. Li, L. Yang, X.J. Wang, J.X. Zhang, L.Y. Xie, L.J. Deng, G.Z. Zhang, J. Jiang*, Charge Steering in Heterojunction Photocatalysis: General Principles, Design, Construction, and Challenges, Small Sci. ?? (2023) 2200041.\r
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H. Ren, Q. Zhang, Z.J. Wang, G.Z. Zhang, H.Z. Liu, W.Y. Guo, S. Mukamel*, J. Jiang*, Machine Learning Recognition of Protein Secondary Structures based on Two-Dimensional Spectroscopic Descriptors, Proc Natl Acad Sci USA. 119 (2022) e2202713119.\r
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Q. Zhu, F. Zhang, Y. Huang, H.Y. Xiao, L.Y. Zhao, X.C. Zhang, T. Song, X.S. Tang, X. Li, G. He, B.C. Chong, J.Y. Zhou, Y.H. Zhang, B.C. Zhang, J.Q. Cao, M. Luo, S. Wang, G.L. Ye, W.J. Zhang, X. Chen, S. Cong, D.L. Zhou, H.R. Li, J.L. Li, G. Zou, W.W. Shang*, J. Jiang*, Y. Luo*, An all-round AI-Chemist with scientific mind, Natl. Sci. Rev. 9, (2022) nwac190.\r
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X.J. Wang, S. Jiang, W. Hu, S. Ye, T.R. Wang, F. Wu, L. Yang, X.Y. Li, G.Z. Zhang, X. Chen*, J. Jiang*, Y. Luo*, Quantitatively Determining Surface–Adsorbate Properties from Vibrational Spectroscopy with Interpretable Machine Learning, J. Am. Chem. Soc. 144 (2022) 16069-16076.\r
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B.C. Zhang, X.L. Zhang, W.J. Du, G.Z. Zhang, G.Q. Zhang, Y. Wang, X. Chen*, J. Jiang*, Y. Luo*, Chemistry Informed Molecular Graph as Reaction Descriptors for Machine Learned Retro-Synthesis Planning, Proc Natl Acad Sci USA. 119 (2022) e2212711119.\r
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C.Y. Jia, Q. Wang, J. Yang, K. Ye, X.Y. Li, W.H. Zhong, H.J. Shen, E. Sharman, Y. Luo, J. Jiang*, Toward Rational Design of Dual-Metal-Site Catalysts: Catalytic Descriptor Exploration, ACS Catal. 12 (2022) 3420-3429.\r
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Q. Zhu, W. Jiang, K. Ye, S.R. Jin, W. Dong, S.D. Liu, G.Z. Zhang, C. Tian, Y. Luo, Y.C. Wang*, J. Jiang*, Hydrogenated Oxide Material for Self-targeting and Automatic-degrading Photothermal Tumor Therapy in the NIR-Ⅱ Bio-window, Adv. Funct. Mater. 32 (2022) 202110881.\r
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Y. Zhao*, M. Hu, H.R. Li, B.H. Chu, Y. Huang, C.Y. Jia, Z.W. Zhuo, Y. Luo, J. Jiang*, The role of adsorbed hydroxide reduction in hydrogen evolution and nitrogen reduction reactions in aqueous solution, J. Mater. Chem. A 10 (2022) 18609-18615.\r
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Y.Q. Zhang, X.H. Wang, T.Y. Liu, Q. Dang, L. Zhu, Y. Luo, J. Jiang*, S.B. Tang*, Charge and Spin Communication between Dual Metal Single-Atom Sites on C2N Sheet: Regulating Electronic Spin Moments of Fe Atom for N2 Activation and Reduction, J. Mater. Chem. A 10 (2022) DOI: 10.1039/D2TA06574F.\r
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B.H. Cheng, L.J. Deng, J. Jiang, H. Jiang*, Catalytic cycloaddition of CO2 to epoxides by the synergistic effect of acidity and alkalinity in a functionalized biochar, Chem. Eng. J. ?? (2022) In press.\r
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X.D. Wan, Y.Y. Gao, M. Eshete, M. Hu, R.R. Pan, H.Z. Wang, L.Z. Liu, J. Liu*, J. Jiang, S. Brovelli, J.T. Zhang*, Simultaneous harnessing of hot electrons and hot holes achieved via n-metal-p Janus plasmonic heteronanocrystals, Nano Energy 31 (2022) 107217.\r
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S. Ye, G.Z. Zhang, J. Jiang*, AI-based Spectroscopic Monitoring of Dynamic Interactions between SARS-CoV-2 and Human ACE2, Proc Natl Acad Sci USA. 118 (2021) e2025879118.\r
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W.H. Zhong, Y. Qiu, H.J. Shen, X.J. Wang, J.Y. Yuan, C.Y. Jia, S.W. Bi, J. Jiang*, Electronic Spin Moment as a Catalytic Descriptor for Fe Single-Atom Catalysts Supported on C2N, J. Am. Chem. Soc. 143 (2021) 4405-4413.\r
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L.Y. Zhao, J.X. Zhang, Y.L. Zhang, S. Ye, G.Z. Zhang, X. Chen, B. Jiang*, J. Jiang*, Accurate Machine Learning Prediction of Protein Circular Dichroism Spectra with Embedded Density Descriptors, JACS Au 1 (2021) 2377-2384.\r
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R.R. Pan, M. Hu, J. Liu*, D.F. Li, X.D. Wan, H.Z. Wang, Y.M. Li, X.M. Zhang, X.L. Wang, J. Jiang*, J.T. Zhang*, Two-Dimensional All-in-One Sulfide Monolayers Driving Photocatalytic Overall Water Splitting, Nano Lett 21 (2021) 6228-6236.\r
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M. Hu, Q. Zhu, Y. Zhao, G.Z. Zhang, C.W. Zou, O. Prezhdo, J. Jiang*, Facile Removal of Bulk Oxygen Vacancy Defects in Metal Oxides Driven by Hydrogen-Dopant Evaporation, J. Phys. Chem. Lett. 12 (2021) 9579-9583.\r
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Q. Dang, S.B. Tang*, T.Y. Liu, X.K. Li, X.J. Wang, W.H. Zhong, Y. Luo, J. Jiang*, Regulating Electronic Spin Moments of Single-Atom Catalyst Sites via Single-Atom Promoter Tuning on S-Vacancy MoS2 for Efficient Nitrogen Fixation, J. Phys. Chem. Lett. 12 (2021) 8355-8362.

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