课题组长

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唐山

职位:长聘教轨副教授

电子邮箱:tang.shan@sjtu.edu.cn

办公地点:上海市东川路800号霞光楼612室

个人网页/课题组主页地址:https://www.x-mol.com/groups/tang_shan

研究方向:

  • 高分子合成化学

  • 均相催化

教育背景:

  • 2012.09-2017.06  武汉大学,化学与分子科学学院,博士 (导师: 雷爱文教授) 

  • 2008.09-2012.06  武汉大学,化学与分子科学学院,学士 (导师: 雷爱文教授)

工作经历:

  • 2021.11 至今   上海交通大学变革性分子前沿科学中心,长聘教轨副教授

  • 2020.11-2021.08  日本东京大学工学部化学生命工学科,博士后(合作导师:Kyoko Nozaki教授) 

  • 2017.09-2020.11  以色列魏茨曼科学研究所有机化学系,博士后(合作导师:David Milstein教授)

学术任职、荣誉与获奖:

  • 上海市浦江人才计划(2021)

  • 魏茨曼科学研究所FGS博士后研究杰出成就奖(2020)

  • 武汉大学研究生学术创新奖、一等奖(3次,2018、2016、2015)

  • 第67届德国林岛诺贝尔奖得主大会青年科学家代表(2017)

  • 武汉大学优秀毕业研究生(2017)

  • 武汉大学十大珞珈风云学子(2015)

  • 武汉大学优秀本科毕业生(2012)

学术成果:

  1. S. Tang, F. W. Seidel, K. Nozaki,* High Density Polyethylenes Bearing Isolated In-Chain Carbonyls. Angew. Chem. Int. Ed. 2021, doi: 10.1002/anie.202110957. (Equal contribution)

  2. S. Tang, Y. Zhao, K. Nozaki,* Accessing Divergent Main-Chain-Functionalized Polyethylenes via Copolymerization of Ethylene with a CO2/Butadiene-derived Lactone. J. Am. Chem. Soc. 2021,143, 17953

  3. S. Tang, M. Rauch, M. Montag, Y. Diskin-Posner, Y. Ben-David, D. Milstein*, Catalytic Oxidative Deamination by Water with H2 Liberation. J. Am. Chem. Soc. 2020, 142, 20875.

  4. S. Tang, Y. Ben-David, D. Milstein*, Oxidation of Alkenes by Water with H2 Liberation. J. Am. Chem. Soc. 2020, 142, 5980.

  5. S. Tang, N. von Wolff, Y. Diskin-Posner, G. Leitus, Y. Ben-David, D. Milstein*, Pyridine-based PCP-Ruthenium Complexes: Unusual Structures and Metal-Ligand Cooperation. J. Am. Chem. Soc. 2019, 141, 7554. (Equal contribution)

  6. K. Liu, S. Tang, T. Wu, S. Wang, H. Cong, A. Lei*, Electrooxidative para-Selective C-H/N-H Cross-Coupling with Hydrogen Evolution to Synthesize Triarylamine Derivatives. Nat. Commun. 2019, 10, 639. (Equal contribution)

  7. S. Tang, L. Zeng, A. Lei*, Oxidative R1-H/R2-H Cross-Coupling with Hydrogen Evolution. J. Am. Chem. Soc. 2018, 140, 13128.

  8. S. Tang, Y. Liu, X. Gao, P. Wang, P. Huang, A. Lei*, Multi-Metal-Catalyzed Oxidative Radical Alkynylation with Terminal Alkynes: A New Strategy for C(sp3)-C(sp) Bond Formation. J. Am. Chem. Soc. 2018, 140, 6006. (Equal contribution)

  9. S. Tang, D. Wang, Y. Liu, L. Zeng, A. Lei*, Cobalt-Catalyzed Electrooxidative C-H/N-H [4+2] Annulation with Ethylene or Ethyne. Nat. Commun. 2018, 9, 798. (Equal contribution)

  10. S. Tang, Y. Liu, A. Lei*, Electrochemical Oxidative Cross-coupling with Hydrogen Evolution: A Green and Sustainable Way for Bond Formation. Chem 2018, 4, 27.

  11. S. Tang, S. Wang, Y. Liu, A. Lei*, Electrochemical oxidative C-H Amination of Phenols: Access to Triarylamine Derivatives. Angew. Chem. Int. Ed. 2018, 57, 4737. (Equal contribution)

  12. K. Liu, S. Tang, P. Huang, A. Lei*, External Oxidant-Free Electrooxidative [3 + 2] Annulation between Phenol and Indole derivatives. Nat. Commun. 2017, 8, 775. (Equal contribution)

  13. P. Wang, S. Tang, P. Huang, A. Lei*, Electrocatalytic Oxidant-Free Dehydrogenative C−H/S−H Cross-Coupling. Angew. Chem. Int. Ed. 2017, 56, 3009. (Equal contribution)

  14. S. Tang, P. Wang, Y. Liu, A. Lei*, Multimetallic Catalysed Radical Oxidative C(sp3)–H/C(sp)–H Cross–Coupling Between Unactivated Alkanes and Terminal Alkynes. Nat. Commun. 2016, 7, 11676.

  15. S. Tang, L. Zeng, Y. Liu, A. Lei*, Zinc-Catalyzed Dehydrogenative Cross-Coupling of Terminal Alkynes with Aldehydes: Access to Ynones. Angew. Chem. Int. Ed. 2015, 54, 15850.