Tang Xinxin

作者: 发布时间:2024-02-17 浏览次数:1145

Name: Xinxin Tang                

 

Title:Associate Professor

 

Email:tangxx@suda.edu.cn

 

 

 

 

 

Education:

2010.09—2014.06  BSc, Department of Chemistry, Wuhan University

2014.09—2019.06  PhD Shanghai Institute of Organic Chemistry(SIOC)

                 Advisor:Prof. Zheng Huang

 

Work experience:

2019.06—2019.10  Research assistant, Shanghai Institute of Organic Chemistry

                 Advisor:Prof. Zheng Huang

 

2019.10—2020.12  Postdoctoral, National University of Singapore

                 Advisor:Prof. Jie Wu

 

2021.01—2023.12  Postdoctoral, Institute of Microbial Chemistry , Tokyo

                Advisor:Prof. Masakatsu Shibasaki

 

2024.01—now    Associate Professor, College of Chemistry, Chemical Engineering and Materials Science, Soochow University

 

Research area

Organic synthesis

Photoredox chemistry

Flow chemistry

 

Publications:

1. Tang, X.; Jia, X.; Huang, Z.*, Thermal, catalytic conversion of alkanes to linear aldehydes and linear amines. J. Am. Chem. Soc. 2018, 140, 4157-4163.

 

2. Tang, X.; Gan, L.; Zhang, X.; Huang, Z.*, n-Alkanes to n-alcohols: Formal primary C─H bond hydroxymethylation via quadruple relay catalysis. Sci. Adv. 2020, 6, eabc6688.

 

3. Tang, X.; Tak, R. K.; Noda, H.*; Shibasaki, M*. A Missing Link in multisubstituted pyrrolidines: remote stereocontrol forged by rhodium-alkyl nitrene. Angew. Chem. Int. Ed. 2022, e202212421.

 

4. Tang, X.; Noda, H.*; Shibasaki, M*. Locking the conformation of a paddlewheel rhodium complex: Design, synthesis, and application in catalytic nitrene transfers. Angew. Chem. Int. Ed.  2023, e202311027.

 

5. Tang, X.; Jia, X.; Huang, Z.*, Challenges and opportunities for alkane functionalization using molecular catalysts. Chem. Sci. 2018, 9, 288-299.

 

6. Tang, X.; Huang, Z.*, Transition-metal complex-catalyzed alkane functionalization. Chin. Sci. Bull. 2018, 63, 1348-1360.

 

7. Tang, X.; Noda, H.; Shibasaki, M., anti-Selective synthesis of substituted β-homoprolines by rhodium alkyl nitrene C–H insertion. Synlett 2023. doi: 10.1055/a-2201-7267

 

8 Li, H.; Tang, X.; Pang, J. H.; Wu, X.; Yeow, E. K. L.; Wu, J.; Chiba, S.*, Polysulfide anions as visible light photoredox catalysts for aryl cross-couplings. J. Am. Chem. Soc. 2021, 143, 481-487.

 

9. Liu, H.; Xue, F.; Wang, M.; Tang, X.*; Wu, J.*, Neutral-eosin Y-catalyzed regioselective hydroacylation of aryl alkenes under visible-light irradiation. Synlett 2021, 32, 406-410.

 

10. Cao, H.; Tang, X.; Tang, H.; Yuan, Y.; Wu, J.*, Photoinduced intermolecular hydrogen atom transfer reactions in organic synthesis. Chem Catalysis 2021, 1, 523-598.

 

11. Noda, H.; Tang, X.; Shibasaki, M. Catalyst-Controlled Chemoselective Nitrene Transfers. Helv. Chim. Acta 2021, 104, e2100140.

 

12. Xu, J.; Cao, J.; Wu, X.; Wang, H.; Yang, X.; Tang, X.; Toh, R. W.; Zhou, R.; Yeow, E. K. L.; Wu, J. Unveiling Extreme Photoreduction Potentials of Donor–Acceptor Cyanoarenes to Access Aryl Radicals from Aryl Chlorides. J. Am. Chem. Soc. 2021, 143, 13266-13273.

 

13. Ye, C.; Peng, M.; Cui, T.; Tang, X.; Wang, D.; Jiao, M. *; Miller, J. T. *; Li, Y. * Revealing the surface atomic arrangement of noble metal alkane dehydrogenation catalysts by a stepwise reduction-oxidation approach. Nano Research 2021.1-7.