Welcome to Shi group
We work on topics such as catalytic nitrogen fixation and nitrogen synthesis and catalytic alkane oxidation.
RESEARCH RESULTS
More
2024

Nature-Inspired Photocatalytic Azo Bond Cleavage with Red Light
Nature-Inspired Photocatalytic Azo Bond Cleavage with Red Light
Zijian Zhao, Jili Li, Wei Yuan, Dajiao Cheng, Suze Ma, Ye-Fei Li, Zhang-Jie Shi, Ke Hu* J. Am. Chem. Soc. 2024, 146, 2, 1364–1373
2024

Directed Aromatic Deuteration and Tritiation of Pharmaceuticals by Heavy Alkali Metal Amide Catalysts
Directed Aromatic Deuteration and Tritiation of Pharmaceuticals by Heavy Alkali Metal Amide Catalysts
Hui-Zhen Du, Jingwei L, Stella Christodoulou, Si-Yuan Li, Yun-Shu Cui, Junliang Wu, Sumei Ren, Laurent Maron, Zhang-Jie, ShiBing-Tao Guan* ACS Catal. 2024, 14, 13, 9640–9647
2024

Jellyfish-type Dinuclear Hafnium Azido Complexes: Synthesis and Reactivity
Jellyfish-type Dinuclear Hafnium Azido Complexes: Synthesis and Reactivity
Xin-Cheng Lin, Yun-Shu Cui, Si-Jun Xie, Dong-Ping Chen, Dr. Dan-Dan Zhai, Prof. Dr. Zhang-Jie Shi. Chem. Asian J. 2023, 18, e202300659.
2024

Transition-Metal-Catalyzed C–C Bond Formation from C–C Activation
Transition-Metal-Catalyzed C–C Bond Formation from C–C Activation
Feijie Song, Biqin Wang, Zhang-Jie Shi. Chem. Res. 2023, 56, 21, 2867–2886
2024

Nature-Inspired Photocatalytic Azo Bond Cleavage with Red Light
Nature-Inspired Photocatalytic Azo Bond Cleavage with Red Light
2024

Directed Aromatic Deuteration and Tritiation of Pharmaceuticals by Heavy Alkali Metal Amide Catalysts
Directed Aromatic Deuteration and Tritiation of Pharmaceuticals by Heavy Alkali Metal Amide Catalysts
2024

Jellyfish-type Dinuclear Hafnium Azido Complexes: Synthesis and Reactivity
Jellyfish-type Dinuclear Hafnium Azido Complexes: Synthesis and Reactivity
2024
