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个人简介

学习经历 2008年-2011年 美国加州大学戴维斯分校材料科学与工程专业 博士 2004年-2008年 上海交通大学材料科学与工程专业 学士 工作经历 2017年至今 南方科技大学材料科学与工程系 副教授 2014年-2017年 美国陶氏化学-道康宁公司 材料科学家 2011年-2014年 美国西北太平洋国家实验室 博士后研究

研究领域

1 钠离子、锂离子电池、燃料电池核心技术的研发 2 动力全固态电池的设计和界面表征 3 二维层状材料的生产和应用 4 空气/水净化催化剂,光催化、电催化产氢气催化剂 5 球差矫正原位透射电镜研究催化剂和电池材料,原子尺度观测材料结构动态变化,建立结构-性能的联系,提供生产条件参数反馈

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

Jinfa Chang, Guanzhi Wang, Zhenzhong Yang, Boyang Li, Qi Wang, Ruslan Kuliiev,Nina Orlovskaya, Meng Gu,* Yingge Du, Guofeng Wang,* and Yang Yang*,Dual-Doping and Synergism toward High-Performance Seawater Electrolysis,Adv. Mater. 2021, 2101425. Bing Han, Yucheng Zou, Guiyin Xu, Shiguang Hu, Yuanyuan Kang, Yunxian Qian,Jing Wu, Xiaomin Ma, Jianquan Yao, Tengteng Li, Zhen Zhang, Hong Meng, Hong Wang, Yonghong Deng*, Ju Li*, Meng Gu*Additive Stabilization of SEI on Graphite Observed Using Cryo-Electron Microscopy,Energy & Environmental Science,2021, DOI: 10.1039/D1EE01678D. Bing Han#, Yucheng Zou#, Zhen Zhang, Xuming Yang, Xiaobo Shi, Hong Meng, Hong Wang, Kang Xu, Yonghong Deng*, Meng Gu*,Probing the Na metal solid electrolyte interphase via cryo-transmission electron microscopy,Nature communications,2021,12(1),1-8. Bing Han,Yucheng Zou, Ruohong Ke, Tengteng Li, Zhen Zhang, Chaoyang Wang, Meng Gu*, Yonghong Deng*, Jianquan Yao*, and Hong Meng*, Stable Lithium Metal Anodes with a GaOx Artificial Solid Electrolyte Interphase in Damp Air,ACS Appl. Mater. Interfaces ,2021, https://doi.org/10.1021/acsami.1c04196. Bing Han, Zhen Zhang, Yucheng Zou, Kang Xu, Guiyin Xu, Hong Wang, Hong Meng, Yonghong Deng*, Ju Li*, Meng Gu*,Poor Stability of Li2CO3 in the Solid Electrolyte Interphase of a Lithium‐Metal Anode Revealed by Cryo‐Electron Microscopy,Advanced Materials, 2100404,https://doi.org/10.1002/adma.202100404 Xiao, Fei, Liu, Xiang, Sun, Cheng-Jun,Hwang, Inhui, Wang, Qi,Xu, Zhiwen, Wang, Yian, Zhu, Shangqian,Wu, Hsi-wen ,Wei, Zidong,Zheng, Liping,Cheng, Daojian,Gu, Meng,Xu, Gui-Liang,Amine, Khalil,Shao, Minhua. Solid-State Synthesis of Highly Dispersed Nitrogen-Coordinated Single Iron Atom Electrocatalysts for Proton Exchange Membrane Fuel cells, Nano Letters, 2021, 21, 8, 3633–3639 Wei Chen, Bing Han, Qin Hu, Meng Gu, Yudong Zhu, Wenqiang Yang, Yecheng Zhou, Deying Luo, Fang-Zhou Liu, Rui Cheng, Rui Zhu, Shien-Ping Feng, Aleksandra B. Djurišić, Thomas P. Russell, Zhubing He, Interfacial stabilization for inverted perovskite solar cells with long-term stability, Science Bulletin,Available online 25 February,2021,https://doi.org/10.1016/j.scib.2021.02.029 Changwei Wu#, Junfan Tong#, Jian Gao,* Junpeng Li, Xiaolei Li, Jianxun Zhu, Meng Gu,and Weidong Zhou*,Studies on the Sodium Storage Performances of Na3AlxV2−x(PO4)3@C Composites from Calculations and Experimental Analysis,ACS Appl. Energy Mater. 2021, 4, 1120−1129. Tiehuai Li , Jing Wang, Shangqian Zhua, Ernest Pahuyo Delmoa, Fei Suna, Lili Zhang*,Meng Gu*, Minhua Shao*,Cu3PdxN nanocrystals for effiffifficient CO2 electrochemical reduction to methane,Electrochimica Acta 371 (2021) 137793. Chao Cai, Maoyu Wang, Shaobo Han, Qi Wang, Qing Zhang, Yuanmin Zhu, Xuming Yang, Duojie Wu, Xiaotao Zu*, George E. Sterbinsky, Zhenxing Feng*, and Meng Gu*, Ultrahigh Oxygen Evolution Reaction Activity Achieved Using Ir Single Atoms on Amorphous CoOx Nanosheets, ACS Catal. 2021, 11, 123–130 Hengquan Chen, Tianlong Zheng, Qinggang He*, Longan Shang, Guangjin Wang, Qi Wang, Xiaojiang Wang, Xiaobo Shi, Meng Gu*, Zheng Jiang, Local Coordination and Ordering Engineering to Design Efficient Core-Shell Oxygen Reduction Catalysts, J. Electrochem. Soc. 167 144501(2020) Yuanmin Zhu, Meng Gu*, Z.F. Huang*,Extension of Compositional Space to the Ternary in Alloy Chiral Nanoparticles through Galvanic Replacement Reactions,Advanced Science, 2020, Volume7, Issue23, 2001321 Guojing Hu, Yuanmin Zhu, Junxiang Xiang, Tzu-Yi Yang, Meng Huang, Zhe Wang, Zhi Wang, Ping Liu, Ying Zhang, Chao Feng, Dazhi Hou, Wenguang Zhu, Meng Gu, Chia-Hsiu Hsu, Feng-Chuan Chuang, Yalin Lu, Bin Xiang, Yu-Lun Chueh, Antisymmetric Magnetoresistance in a van der Waals Antiferromagnetic/Ferromagnetic Layered MnPS3/Fe3GeTe2 Stacking Heterostructure, ACS Nano,2020, 14, 9, 12037–12044 Xiao Zhang#, Yang Wang#, Meng Gu#, Maoyu Wang, Zisheng Zhang, Weiying Pan, Zhan Jiang, Hongzhi Zheng, Marcos Lucero, Hailiang Wang, George E. Sterbinsky, Qing Ma, Yang-Gang Wang, Zhenxing Feng, Jun Li, Hongjie Dai , Yongye Liang. Molecular engineering of dispersed nickel phthalocyanines on carbon nanotubes for selective CO2 reduction, Nature Energy (2020), August, 5, 684–692 Zhao Li, Wenhan Niu, Zhenzhong Yang, Abdelkader Kara, Qi Wang, Maoyu Wang, Meng Gu *, Zhenxing Feng*, Yingge Du*, Yang Yang*. Boosting Alkaline Hydrogen Evolution: Dominating Role of Interior Modification in Surface Electrocatalysis . Energy & Environmental Science,2020.7, 13, 3110-3118 Wenhua Zhong, Zheng Wang, Shaobo Han, Libo Deng, Jun Yu, Yangu Lin, Xia Long, Meng Gu*, Shihe Yang* . Identifying the Active Sites of a Single Atom Catalyst with pH-Universal Oxygen Reduction Reaction Activity.Cell Reports Physical Science 1, 100115, July 22, 2020,100115 Binbin Jiang, Xixi Liu, Qi Wang, Juan Cui, Baohai Jia, Yuke Zhu, Jianghe Feng, Yang Qiu, Meng Gu, Zhenhua Ge, Jiaqing He. Realizing high-efficiency power generation in low-cost PbS-based thermoelectric materials.Energy Environ. Sci., 2020, 13,579–591 Zhen Zhang, Ping Li, Qi Wang, Qi Feng, Youkun Tao, Jiaoyan Xu, Cheng Jiang, Xiner Lu, Jiantao Fan, Meng Gu, Hui Li, Haijiang Wang. Mo modulation effect on the hydrogen binding energy of hexagonal-close-packed Ru for hydrogen evolution.J. Mater. Chem. A,2019, 7,2780-2786 Jiangwei Wen, Xiaoting Yang, Zongzhao Sun, Jianjing Yang, Ping Han, Qiuxia Liu, Hongyan Dong, Meng Gu, Limin Huang , Hua Wang . Biomimetic photocatalytic sulfonation of alkenes to access β-ketosulfones with single-atom iron site,Green Chem.,2020,22, 230–237 Chaozhuang Xue, Jiaxu Zhang, Xiang Wang, Meng Gu, Yuanmin Zhu, Dong-Sheng Li, Jun Guo, Yang Liu, Tao Wu. Light-triggered evolution of molecular clusters toward sub-nanoscale heterojunctions with high interface density.Chem. Commun.2019, 55, 8146–8149

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