GIFT Faculty
Shouhang Bo
Professor, Global Institute of Future Technology, Shanghai Jiao Tong University
Professor, School of Chemistry and Chemical Engineering, Shanghai Jiao Tong University Ph.D.,Stony Brook University
Postdoc.,Massachusetts Institute of Technology & Lawrence Berkeley National Laboratory
Office Location :Room 327, East Wing of Yue-kong Pao Library
Tel :021-54741175
Email :shouhang.bo@sjtu.edu.cn
Education

2014,Chemistry,Stony Brook University,Ph.D

2009,Chemistry,Fudan University,B.S

Work Experience

2023-Pres.,Global Institute of Future Technology, SJTU,Professor

2020-Pres.,College of Chemistry and Chemical Engineering, SJTU,Professor

2022-2023,Global Institute of Future Technology, SJTU,Tenure-Track Associate Professor

2020-2022,UM-SJTU Joint Institute, SJTU,Tenure-Track Associate Professor

2017-2020,UM-SJTU Joint Institute, SJTU,Tenure-Track Assistant Professor

2015-2017,Materials Sciences Division, Lawrence Berkeley National Laboratory,Postdoctoral Associate

2014-2015,Department of Materials Science and Engineering, Massachusetts Institute of Technology,Postdoctoral Associate

Research Fields

Solid-state batteries

Battery imaging diagnosis

Honors and Awards

2025,SJTU 1st Prize for Teaching Achievement (Rank 6/8)

2024,SJTU 2nd Prize for Teaching and Educating Award

2024,SJTU Jiahe Outstanding Teaching Award

2022,NSFC Excellent Youth Scholar

2020,Next-Generation Battery Technology Award

2020,SJTU Tang Li Xin Distinguished Teacher Award

2020,Research Excellence Award of UM – SJTU Joint Institute

2018,Shanghai Scientific Talent Yang Fan Program

2017,World Technology Award Finalist

Professional Service

Expert member of COMAC Times Technical Committee

Member of the Solid-State Battery R&D Process and Evaluation Standards Technical Committee

Selected Publications (10 selected in last 3 years)

Z.T. Sun, S. Chen, T. Zhao, Y. Guo, Z. Xu*, S. Zhou* and S.H. Bo* (2025). “Real 2D galvanostatic model: Encoding physicochemical heterogeneity into a full battery” Physical Review Letters, 135(6), 068001.

J. Zhou, X. Tang, X. Yu, S.L. Chen* and S.H. Bo* (2025). “Three-Dimensional Operando Photoacoustic Microscopy Reveals Hidden Patterns in the Complex Electrochemical Plating Process of Lithium Metal.” Journal of the American Chemical Society, 147(45), 41492-41500.

J. Zhou, Y. Huang, J. Zhong, N. Li, Z.T. Sun, S. Chen, X. Yu, Y. Guo, W. Yang, H. Zhu and S.H. Bo* (2025). “Nonambient Thermodynamics in Solid-State Batteries.” ACS Energy Letters, 10(9), 4304-4312.

J. Yang, S. Chen, Q. Yuan, G. Tan, Q. Liu, S. Yang, Y. Deng, Y. Zhao, W. Liu, Y. Yu, Y. Cui, J. Wang*, S.H. Bo* and C. Xu* (2025). UCl3-Type Crystalline Oxychloride Electrolytes for All-Solid-State Lithium-Ion Batteries. Journal of the American Chemical Society, 147(40), 36557-36569.

X. Han, Y. Xu, H. Li, Z. Wang, J. Yue, X. Yan, S. Zhang, J. Fu, Y. Xia, L. Zhou, S. Wei, X. Liu, X. Wang, C. Zhao, X. Li, S.H. Bo*, J. Wang*, X. Sun* and J. Liang* (2025). Mechanically robust halide electrolytes for high-performance all-solid-state batteries. Nature Communications, 16(1), 9770.

X. Yu, S. Chen, B. Tang, X.L. Li, J. Zhou, Y. Ren, J. Wei, C. Yang, Y. Guo, Z. Zhou, and S.H. Bo* (2024). The debate over hard carbon and alloy anodes continues for solid-state sodium batteries. ACS Energy Letters, 9(9), 4441-4449.

S. Chen, Q. Cao, B. Tang, X. Yu, Z. Zhou, S.H. Bo*, and Y. Guo* (2024). Chemomechanical Pairing of Alloy Anodes and Solid-State Electrolytes. ACS Energy Letter, 5373–5382.

Q. Cao, Z.T. Sun, K. Ye, P. Shen, K. Jiang and S.H. Bo* (2024). Stacking pressure homogenizes the electrochemical lithiation reaction of silicon anode in solid-state batteries. Energy Storage Materials, 67, 103246.

J. Hu, Z. T. Sun, Y. Gao, P. Li, Y. Wu, S. Chen, R. Wang, N. Li, W. Yang, Y. Shen and S.H. Bo* (2022). 3D stress mapping reveals the origin of lithium-deposition heterogeneity in solid-state lithium-metal batteries. Cell Reports Physical Science, 3(7).

Z. T. Sun, J. Zhou, Y. Wu and S.H. Bo* (2022). Mapping and modeling physicochemical fields in solid-state batteries. The Journal of Physical Chemistry Letters, 13(46), 10816-10822.

Course Taught (Recent 5 Years)

Fundamental to Energy Materials

General Chemistry

Structure of Materials

Battery Materials: Fundamentals and Applications

CAPSTONE Design