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            專任教師:周明月

            周明月.jpg

            ★〡基本信息


            周明月,男,1992年12月生,特任崗位教授,博士生導師;本科畢業于南京大學材料化學專業(2015年),博士畢業于新加坡國立大學材料科學與工程專業(2020年),同年在清華大學化工系進行博士后研究并入選清華大學“水木學者”計劃,2023年獲得中國石油大學(北京)優秀青年學者培育計劃支持,目前就職于中國石油大學(北京)碳中和未來技術學院。已在Joule、Chem、Angew. Chem. Int. Ed.、Adv. Energy Mater.等化學和能源類主流學術刊物上發表論文33篇,其中第一作者或共同通訊作者11篇,論文總引用次數超過1200次。主持承擔國家自然科學基金青年項目及中國博士后科學基金面上項目2項。主要從事電化學和能源化學的研究工作,致力于通過電解液設計和關鍵界面反應過程調控,結合關鍵測試表征技術,研制高性能電化學儲能器件(液流電池及鋰電池)。

            ★〡研究方向


            主要研究方向為:1. 液流電池中的固體|電解液界面過程的表征與調控(鋅鐵液流電池及固液混合液流電池);2. 鋰電池中的電解液設及關鍵界面過程的表征與調控(鋰金屬負極);3. 電驅動的固體|電解液界面過程的應用探索。

            ★〡工作經歷


            2020.06-2023.01 清華大學,化工系,博士后,合作導師:張強教授

            ● 2023.09-至今 中國石油大學(北京)碳中和未來技術學院 副教授

            ★〡學習經歷


            2015.08-2020.02 新加坡國立大學,材料科學與工程系,博士,導師:王慶教授

            2011.09-2015.07 南京大學,材料化學,本科;

            ★〡學術獎勵


            中國石油大學(北京)校優秀青年學者培育計劃,2023年

            “春暉杯”留學人員創新創業大賽優勝獎(唯一獎項),2021年

            博士后國際交流計劃引進項目,2020年

            清華大學“水木學者”計劃,2020年

             NUS Research Scholarship,新加坡國立大學,2015年


            共發表SCI 37篇,其中一作/通訊共14篇,代表性成果如下:

            l M. Zhou, J.-F. Ding, X.-Q. Ding, L.-P. Hou, P. Shi, J. Xie, B.-Q. Li, J.-Q. Huang, X.-Q. Zhang, and Q. Zhang. Quantifying the Apparent Electron Transfer Number of Electrolyte Decomposition Reactions in Anode-free Batteries. Joule (Cell Sister Journal, IF=46.048), 6(9):2122–2137, 2022.

            l M. Zhou, X.-Q. Ding, L.-P. Hou, J. Xie, B.-Q. Li, J.-Q. Huang, X.-Q. Zhang, and Q. Zhang. Protocol for Quantitative Nuclear Magnetic Resonance for Deciphering the Electrolyte Decomposition Reactions in Anode-free Batteries. STAR Protocols, 3(4):101867, 2022.

            l M. Zhou, Y. Chen, M. Salla, H. Zhang, X. Wang, S. R. Mothe, and Q. Wang. Single-Molecule Redox-Targeting Reactions for a pH-Neutral Aqueous Organic Redox Flow Battery. Angewandte Chemie International Edition, 59(34):14286–14291, 2020.

            l M. Zhou, Y. Chen, Q. Zhang, S. Xi, J. Yu, Y. Du, Y.-S. Hu, and Q. Wang. Na3V2(PO4)3 as the Sole Solid Energy Storage Material for Redox Flow Sodium-Ion Battery. Advanced Energy Materials, 9(30):1901188, 2019.

            l M. Zhou, Q. Huang, T. N. P. Truong, J. Ghilane, Y. G. Zhu, C. Jia, R. Yan, L. Fan, H. Randriamahazaka, and Q. Wang. Nernstian-Potential-Driven Redox-Targeting Reactions of Battery Materials. Chem (Cell Sister Journal), 3(6):1036–1049, 2017.

            l J. Liu, L. Ren, Y. Wang, X. Lu, M. Zhou (co-corresponding), and W. Liu. A Highly-Stable Bifunctional NiCo2S4 Nanoarray@ Carbon Paper Electrode for Aqueous Polysulfide/iodide Redox Flow Battery. Journal of Power Sources, 561:232607, 2023.

            l Y. Wang, L. Ren, J. Liu, X. Lu, M. Zhou (co-corresponding), W. Liu, and X. Sun. In-situ Construction of Composite Artificial SEI for High-performance Lithium Metal Battery. ACS Applied Materials & Interfaces, 14(45):50982–50991, 2022.

            l Q. Wang, H. Wang, J. Wu, M. Zhou (co-corresponding), W. Liu, and H. Zhou. Advanced Electrolyte Design for Stable Lithium Metal Anode: from Liquid to Solid. Nano Energy, 80:105516, 2020.

            l H. Sun, Y. Li, L. Gao, M. Chang, X. Jin, B. Li, Q. Xu, W. Liu, M. Zhou (co-corresponding), and X. Sun. High Throughput Screening of Single Atomic Catalysts with Optimized Local Structures for the Electrochemical Oxygen Reduction by Machine Learning. Journal of Energy Chemistry, 81:349–357, 2023.

            l L. Ren, X. Cao, Y. Wang, M. Zhou (co-corresponding), W. Liu, H. Xu, H. Zhou, and X. Sun. 3D Porous and Li-rich Sn–Li Alloy Scaffold with Mixed Ionic-Electronic Conductivity for Dendrite-Free Lithium Metal Anodes. Journal of Alloys and Compounds, 947:169362, 2023.

            l J. Wu, S. Zhang, C. Yang, X. Zhang, M. Zhou (co-corresponding), W. Liu, and H. Z. Zhou. Rational Design for Siloxane-Based Electrolyte Enabling Highly Stable Lithium Metal Batteries with High-Nickel Cathode. Energy Storage Materials, 63:103043, 2023.

            l Y. Chen, M. Zhou, Y. Xia, X. Wang, Y. Liu, Y. Yao, H. Zhang, Y. Li, S. Lu, W. Qin, X. Wu, and Q. Wang. A Stable and High-Capacity Redox Targeting-Based Electrolyte for Aqueous Flow Batteries. Joule (Cell Sister Journal), 3(9):2255–2267, 2019.


            ★〡聯系方式


            辦公電話:13263276429

            Email:mingyue.zhou@cup.edu.cn



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