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个人简介

工作经历 2022/10-今,中国科学院青岛生物能源与过程研究所,研究员,“清源学者”青年人才 2020/03-2022/09,江南大学,教授(校聘),“至善青年学者”,博士生导师 教育背景 2017/11-2019/09,美国佐治亚理工学院,国家公派联合培养博士生 2013/09-2019/12,南京工业大学,材料化学工程国家重点实验室,免试保送,博士学位 2009/09-2013/06,南京工业大学,学士学位

研究领域

面向碳中和的清洁能源电化学转化 电解水制氢、CO2转化等反应研究(反应路径、吸附态/活性中心演变、原位表征等) 高效催化剂(钙钛矿材料、贵金属纳米材料等)的理性设计和宏量制备 电化学能量转化器件和系统开发(电解水制氢、CO2转化等)

近期论文

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M. Chen, K. Chang, Y. Zhu, Z. Zhang, Y. Dong, X. Qiu, H. Jiang, Y. Zhu, J. Zhu#*, Cation-Radius-Controlled Sn-O Bond Length Boosting CO2 Electroreduction over Sn-Based Perovskite Oxides, Angewandte Chemie International Edition, 2023, e202305530. Y. Li#, F. Liu#, Z. Chen#, L. Shi, Z. Zhang, Y. Gong, Y. Zhang, X. Tian, Y. Zhang, X. Qiu, X. Ding, X. Bai, H. Jiang, Y. Zhu, J. Zhu*, Perovskite-Socketed Sub-3 nm Copper for Enhanced CO2 Electroreduction to C2+, Advanced Materials, 2022, 2206002. J. Zhu#*, Y. Wang#, A. Zhi#, Z. Chen, L. Shi, Z. Zhang, Y. Zhang, Y. Zhu, X. Qiu, X. Tian, X. Bai, Y. Zhang*, Y. Zhu*, Cation-Deficiency-Dependent CO2 Electroreduction over Copper-Based Ruddlesden-Popper Perovskite Oxides, Angewandte Chemie International Edition, 2022, 61, e202111670. K. Su, A. Yang, Y. Guo, B. Liu*, J. Zhu*, Y. Tang, X. Qiu*, Customizing the Anisotropic Electronic States of Janus-Distributive FeN4 and NiN4 Dual-Atom Sites for Reversible Oxygen Electrocatalysis, Applied Catalysis B: Environmental, 2022, accepted. S. Wang, S. Yang, Z. Wei, Y. Liang, J. Zhu*, Y. Tang, X. Qiu*, Ultrathin IrRu nanocages with tunable electronic reciprocity for highly efficient water splitting in acidic media, Journal of Materials Chemistry A, 2022, accepted. D. Jiang, X. Huang, Q. Zhang, Y. Ge, Y. Ye, C. Xu, Y. Cai, Y. Zhu, M. Yuan, X. Liu, S. Cai, J. Zhu*, Y. Wang*, A miniaturized electrochemical device based on the nitrogen, carbon-codoped bimetal for real-time monitoring of acetaminophen and dopamine in urine, Biosensors & Bioelectronics, 2022, 218, 114773. J. Zhu#, L. Xu#, Z. Lyu, M. Xie, R. Chen, W. Jin, M. Mavrikakis*, Y. Xia*, Janus Nanocages of Platinum-Group Metals and Their Use as Effective Dual-Electrocatalysts, Angewandte Chemie International Edition, 2021, 60, 10384. K. Chu#, F. Liu#, J. Zhu*, H. Fu, H. Zhu, Y. Zhu, Y. Zhang, F. Lai, T. Liu*, A General Strategy to Boost Electrocatalytic Nitrogen Reduction on Perovskite Oxides via the Oxygen Vacancies Derived from A-site Deficiency, Advanced Energy Materials, 2021, 11, 2003799. K. Su#, H. Zhang#, S. Qian, J. Li, J. Zhu*, Y. Tang, X. Qiu*, Atomic Crystal Facet Engineering of Core-Shell Nanotetrahedrons Restricted under Sub-10 Nanometer Region, ACS Nano, 2021, 15, 5178. J. Zhu#, A. Elnabawy#, Z. Chen, E. Murray, M. Xie, Z. Lyu, W. Jin, M. Mavrikakis*, Y. Xia*, Facet-Controlled Pt–Ir Nanocrystals with Substantially Enhanced Activity and Durability towards Oxygen Reduction, Materials Today, 2020, 35, 69. J. Zhu, Z. Chen, Z. Lyu, M. Xie, M. Chi, W. Jin, Y. Xia*, Pt-Ir-Pd Trimetallic Nanocages as a Dual Catalyst for Efficient Oxygen Reduction and Evolution Reactions in Acidic Media, Advanced Energy Materials, 2020, 10, 1904114. J. Zhu, Z. Chen, M. Xie, Z. Lyu, M. Chi, M. Mavrikakis, W. Jin, and Y. Xia*, Iridium-Based Cubic Nanocages with 1.1-nm Thick-Walls: A Highly Efficient and Durable Electrocatalyst for Water Oxidation in An Acidic Medium. Angewandte Chemie International Edition, 2019, 58, 7244. (selected as a hot paper, highlighted on the back cover) J. Zhu, Z. Lyu, Z. Chen, M. Xie, M. Chi, W. Jin, Y. Xia*, Facile Synthesis and Characterization of Pd@IrnL (n = 1–4) Core-Shell Nanocubes for Highly Efficient Oxygen Evolution in Acidic Media, Chemistry of Materials, 2019, 31, 5867. J. Zhu, G. Zhang, G. Liu, Z. Liu, Z. Chu, W. Jin*, N. Xu, Perovskite Hollow Fibers with Precisely Controlled Cation Stoichiometry via One-Step Thermal Processing. Advanced Materials, 2017, 29, 201606377. (highlighted on the frontispiece) J. Zhu, T. Wang, Z. Song, Z. Liu, G. Zhang, W. Jin*, Enhancing Oxygen Permeation via Multiple Types of Oxygen Transport Paths in Hepta-bore Perovskite Hollow Fibers. AIChE Journal, 2017, 63, 4273. J. Zhu, G. Liu, Z. Liu, Z. Chu, W. Jin*, N. Xu, Unprecedented Perovskite Oxyfluoride Membranes with High-Efficiency Oxygen Ion Transport Paths for Low-Temperature Oxygen Permeation. Advanced Materials, 2016, 28, 3511. (highlighted on the frontispiece) J. Zhu, S. Guo, Z. Chu, W. Jin*, CO2-Tolerant Oxygen-Permeable Perovskite-Type Membranes with High Permeability. Journal of Materials Chemistry A, 2015, 3, 22564. (highlighted on the inside back cover) J. Zhu, S. Guo, Z. Zhang, X. Jiang, Z. Liu, W. Jin*, CO2-Tolerant Mixed-Conducting Multichannel Hollow Fiber Membrane for Efficient Oxygen Separation. Journal of Membrane Science, 2015, 485, 79. J. Zhu, S. Guo, G. Liu, Z. Liu, Z. Zhang, W. Jin*, A Robust Mixed-Conducting Multichannel Hollow Fiber Membrane Reactor. AIChE Journal, 2015, 61, 2592. J. Zhu, Z. Liu, S. Guo, W. Jin*, Influence of Permeation Modes on Oxygen Permeability of the Multichannel Mixed-Conducting Hollow Fibre Membrane. Chemical Engineering Science, 2015, 122, 614. J. Zhu, Z. Dong, Z. Liu, K. Zhang, G. Zhang, W. Jin*, Multichannel Mixed-Conducting Hollow Fiber Membranes for Oxygen Separation. AIChE Journal, 2014, 60, 1969.

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