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博士、硕导

袁度 湖湘学者

发布者:谭冰  发布时间:2020年11月19日 12:36

 

个人简介

袁度:1982年,博士,湖湘学者,湖南省“团队百人计划”核心成员。20056月毕业于新加坡国立大学材料科学系,获荣誉应用理学学士学位。20127月毕业于新加坡国立大学材料科学与工程系,获博士学位。随后在新加坡国立大学、南洋理工大学进行博士后研究。202011月入职九州平台-九州(中国)材料科学与工程学院。

 

研究领域与方向:

  • 新型水系可充金属电池;

  • 材料表界面科学与工程;

  • 纳米材料设计合成与物化性质研究;

 

锌负极织构调控、锌表面保护、新型电解质(新型锌盐、深共晶溶剂、离子凝胶);

纳米复合材料(尺寸、界面效应)、智能响应材料;

生物质材料再生利用;

 

发表文章(部分):

  • Converting Commercial Zn Foils into Single (002)-Textured Zn with Millimeter-Sized Grains for Highly Reversible Aqueous Zinc Batteries, Zibo Chen, Qiang Wu, Xuran Han, Cheng Wang, Jialu Chen, Tao Hu, Qian He, Xinyue Zhu, Du Yuan*, Jianyu Chen, Yu Zhang, Lijun Yang, Yanwen Ma*, Jin Zhao*, Angew. Chem. Int. Ed. 2024, e202401507.

  • Impact of Fluorine-Based Lithium Salts on SEI for All-Solid-State PEO-Based Lithium Metal Batteries, Jiajia Li, Haiman Hu, Wenhao Fang, Junwei Ding, Du Yuan, huangjiang Luo, Haitao Zhang, Xiaoyan Ji, Adv. Funct. Mater., 33: 2303718.

  • A cellulose-Complexing Strategy Induced Surface Regulation towards Ultrahigh Utilization Rate of Zn, Xin Li, Hong Yao, Yuhang Li, Xiangjie Liu, Du Yuan*, Yingqian Chen, Ming Wah Wong, Yizhou Zhang*, Haitao Zhang*, J. Mater. Chem. A 2023, https://doi.org/10.1039/D3TA02117C

  • Bi-affinity Electrolyte Optimizing High-Voltage Lithium-Rich Manganese Oxide Battery via Interface Modulation StrategyXuedi Yuan, Tao Dong, Jiaxin Liu, YIngyue Cui, Haotian Dong, Du Yuan, Haitao Zhang*, Angew. Chem. Int. Ed. 2023, e202304121

  • Roles of electrolyte additive on Zn chemistry, Yuhang Li, Hong Yao, Xiangjie Liu, Xiaotong Yang, Du Yuan*, Nano Research, 2023,  https://doi.org/10.1007/s12274-023-5637-7

  • A liquid crystal ionomer-type electrolyte towards ordering-induced regulation for highlyreversible zinc ion battery, Du Yuan*, Xin Li, Hong Yao, Yuhang Li, Xiaobo Zhu, Jin Zhao*, Haitao Zhang*, Yizhou Zhang, Ernest Tang Jun Jie, Yi Cai, Madhavi Srinivasan*, Adv. Sci. 2023, 2206469.

  • Water in gel electrolyte for zinc ion battery, Xiangjie Liua, Xin Lia, Xiaotong Yang, Jingqi Lu, Xuan Zhang, Du Yuan,* Yizhou*, Chem. Asian J. 2023, e202201280.

  • Ionic liquid crystal electrolytes: Fundamental, applications and prospects, Qinqin Ruan, Meng Yao, Du Yuan, Haotian Dong, Jiaxin Liu, Xuedi Yuan, Wenhao Fang, Guoying Zhao, Haitao Zhang, Nano Energy 2023, 106, 108087.

  • Texture control of commercial Zn foils prolongs their reversibility as aqueous battery anodes, Zibo Chen, Jin Zhao*, Qian He, Mingshi Li, Shan Feng, Yizhou Wang, Du Yuan, Jianyu Chen, Husam N. Alshareef*, and Yanwen Ma*, ACS Energy Lett. 2022, 7, 3564.

  • Unraveling the Synergistic Coupling Mechanism of Li+ Transport in an “Ionogel-in-Ceramic” Hybrid Solid Electrolyte for Rechargeable Lithium Metal Battery, Xianli Song, Chenlu Wang, Junwu Chen, Sen Xin, Du Yuan, Yanlei Wang, Kun Dong, Lipeng Yang, Gongying Wang, Haitao Zhang*, Suojiang Zhang*, Adv. Funct. Mater. 2021, 2108706.

  • Current progress and future perspectives of electrolytes for rechargeable aluminium-ion batteries, Dongwei Ma, Du Yuan, Carlos Ponce de Leon, Zheng Jian, Xin Xia, Jia Hong Pan*, Energy & Environmental Materials 2023, 6, e12301.

  • Anion Texturing Towards DendriteFree Zn Anode for Aqueous Rechargeable Batteries, Du Yuan*, Jin Zhao, Hao Ren, Yingqian Chen, Rodney Chua, Ernest Tang Jun Jie, Yi Cai, Eldho Edison, William Manalastas, Ming Wah Wong, Madhavi Srinivasan*, Angew. Chem. Int. Ed. 2021, 60,7213.

  • Boosting Zn-Ion Storage Performance of Bronze-Type VO2 via Ni-Mediated Electronic Structure Engineering, Y. Cai, R. Chua, Z. Kou, H. Ren, D. Yuan, S. Huang, S. Kumar, V. Verma, P. Amonpattaratkit, and M. Srinivasan, ACS Appl. Mater. Interfaces 2020, 12, 36110-36118.

  • Hierarchical porous carbon monolith derived from lignin for high areal capacitance supercapacitors, Hui Li, Yuhui Zhao, Siqi Liu, Pengcheng Li, Du Yuan*, and Chaobin He*, Micropor. Mesopor. Mat. 2020, 297, 109960.

  • Bronze-type vanadium dioxide holey nanobelts as high performing cathode material for aqueous aluminium-ion batteries, Y. Cai, S. Kumar, R. Chua, V. Verma, D. Yuan, Z. Kou, H. Ren, H. Arora and M. Srinivasan. J. Mater. Chem. A, 2020, 8, 12716.

  • Lignin@Nafion Membrane Enabled Zn SEI Formation Enhancing Cycle-life for Rechargeable Zinc Ion Battery, D. Yuan, W. Manalastas Jr, L. Zhang, J. Chan, S. Meng, Y. Chen, and M. Srinivasan, ChemSusChem, 2019, 12, 4889.

  • High-performance flexible quasi-solid-state zinc-ion batteries with layer-expanded vanadium oxide cathode and zinc/stainless steel mesh composite anode, J. Zhao, H. Ren, Q. Liang, D. Yuan, S. Xi, C. Wu, W. Manalastas Jr, J. Ma, Wei Fang, Yun Zheng, C. Du, M. Srinivasan, and Q. Yan, Nano Energy, 2019, 62, 94.

  • Water in Rechargeable MultivalentIon Batteries: An Electrochemical Pandora's Box, W. Manalastas Jr., S. Kumar, V. Verma, L. Zhang, D. Yuan, and M. Srinivasan, ChemSusChem, 2019, 12, 379.

     

    科研团队:

    诚挚欢迎热爱科研、努力上进的同学加入课题组!(https://www.x-mol.com/groups/yuan_du

     

    联系方式:Email: yuandu@csust.edu.cn

     

    通讯地址:湖南省长沙市天心区九州平台-九州(中国)云塘校区新能源大楼3B-502/204