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Shunhan Jia
Shunhan Jia
在 iccas.ac.cn 的电子邮件经过验证
标题
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年份
Atomically Dispersed Ni‐Cu Catalysts for pH‐Universal CO2 Electroreduction
L Zhang, J Feng, S Liu, X Tan, L Wu, S Jia, L Xu, X Ma, X Song, J Ma, ...
Advanced Materials, 2209590, 2023
1082023
Electrochemical transformation of CO2 to value-added chemicals and fuels
S Jia, X Ma, X Sun, B Han
CCS Chemistry 4 (10), 3213-3229, 2022
452022
Boosting Electrocatalytic Nitrate‐to‐Ammonia via Tuning of N‐Intermediate Adsorption on a Zn‐Cu Catalyst
L Wu, J Feng, L Zhang, S Jia, X Song, Q Zhu, X Kang, X Xing, X Sun, ...
Angewandte Chemie 63 (43), e202307952, 2023
412023
Oxophilicity-Controlled CO2 Electroreduction to C2+ Alcohols over Lewis Acid Metal-Doped Cuδ+ Catalysts
L Zhang, J Feng, L Wu, X Ma, X Song, S Jia, X Tan, X Jin, Q Zhu, X Kang, ...
Journal of the American Chemical Society 145 (40), 21945-21954, 2023
342023
Flexible and tailorable quasi‐solid‐state rechargeable Ag/Zn microbatteries with high performance
S Bi, F Wan, S Wang, S Jia, J Tian, Z Niu
Carbon Energy 3 (1), 167-175, 2021
332021
Identifying the Optimal Oxidation State of Cu for Electrocatalytic CO2-to-C2+ Products
L Xu, J Feng, L Wu, X Song, X Tan, L Zhang, X Ma, S Jia, J Du, A Chen, ...
Green Chemistry 25 (4), 1326-1331, 2023
252023
Boosting CO2 electroreduction over Co nanoparticles supported on N, B-co-doped graphitic carbon
X Song, W Guo, X Ma, L Xu, X Tan, L Wu, S Jia, T Wu, J Ma, F Zhang, ...
Green Chemistry 24 (4), 1488-1493, 2022
222022
Towards sustainable CO2 electrochemical transformation via coupling design strategy
X Song, S Jia, L Xu, J Feng, L He, X Sun, B Han
Materials Today Sustainability 19, 100179, 2022
172022
A Sn-stabilized Cuδ+ electrocatalyst toward highly selective CO2-to-CO in a wide potential range
X Tan, W Guo, S Liu, S Jia, L Xu, J Feng, X Yan, C Chen, Q Zhu, X Sun, ...
Chemical science 13 (40), 11918-11925, 2022
112022
Multicomponent Catalyst Design for CO2/N2/NOx Electroreduction
S Jia, L Wu, L Xu, X Sun, B Han
Industrial Chemistry & Materials 1 (1), 93-105, 2023
82023
Integration of plasma and electrocatalysis to synthesize cyclohexanone oxime under ambient conditions using air as a nitrogen source
S Jia, X Tan, L Wu, X Ma, L Zhang, J Feng, L Xu, X Song, Q Zhu, X Kang, ...
Chemical Science 14 (45), 13198-13204, 2023
72023
Stabilizing Cu 0–Cu+ sites by Pb-doping for highly efficient CO 2 electroreduction to C 2 products
X Ma, X Song, L Zhang, L Wu, J Feng, S Jia, X Tan, L Xu, X Sun, B Han
Green Chemistry 25 (19), 7635-7641, 2023
62023
Nitrogenous Intermediates in NOx‐involved Electrocatalytic Reactions
S Jia, L Wu, H Liu, R Wang, X Sun, B Han
Angewandte Chemie International Edition 63 (15), e202400033, 2024
52024
Asymmetric Cu Sites for Enhanced CO2 Electroreduction to C2+ Products
W Guo, X Tan, S Jia, S Liu, X Song, X Ma, L Wu, L Zheng, X Sun, B Han
CCS Chemistry 6 (5), 1231-1239, 2023
42023
Synthesis of Hydroxylamine via Ketone-Mediated Nitrate Electroreduction
S Jia, L Wu, X Tan, J Feng, X Ma, L Zhang, X Song, L Xu, Q Zhu, X Kang, ...
Journal of the American Chemical Society 146 (15), 10934-10942, 2024
22024
Lignin-derived carbon nanosheets boost electrochemical reductive amination of pyruvate to alanine
S Jia, X Tan, L Wu, Z Zhao, X Song, J Feng, L Zhang, X Ma, Z Zhang, ...
iScience 26 (10), 107776, 2023
22023
Active hydrogen-controlled CO2/N2/NOx electroreduction: From mechanism understanding to catalyst design
H Liu, S Jia, L Wu, L He, X Sun, B Han
The Innovation Materials 2 (1), 100058, 2024
12024
Defective PrOx for Efficient Electrochemical NO2-to-NH3 in a Wide Potential Range
S Jia, X Tan, L Wu, J Feng, L Zhang, L Xu, R Wang, X Sun, B Han
Chemistry 5 (2), 753-761, 2023
12023
Zn-induced electron-rich Sn catalysts enable highly efficient CO 2 electroreduction to formate
X Tan, S Jia, X Song, X Ma, J Feng, L Zhang, L Wu, J Du, A Chen, Q Zhu, ...
Chemical Science 14 (30), 8214-8221, 2023
12023
Graphene protection improves the stability of two‐dimensional halide perovskites under the electron irradiation
B Yuan, Z Hua, S Jia, Y Lu, E Shi, Y Yu
Microscopy Research and Technique 85 (11), 3582-3588, 2022
12022
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