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朱卫多

发布日期:2022-02-23 来源: 阅读次数:

姓 名:朱卫多

职 称:讲师

职 务:

所属系:物理系

邮 箱:weiduozhu@hfut.edu.cn

电 话:

个人简介:

教育背景:

2008.09-2012.06 南昌航空大学,应用化学学士;

2012.09-2018.06 中国科学技术大学,获物理化学博士;

2017.01-2017.05 前往美国内布拉斯加大学-林肯分校,博士联合培养。

工作经历:

2018.07-2020.12,中国科学技术大学博士后

2019.09-2020.03,美国内布拉斯加大学林肯分校,国家留学基金委资助博士后;

2021.01-2022.01,中国科学技术大学,特任副研究员;

2022.02-至今,合肥工业大学,讲师。

研究方向:

主要采用分子动力学模拟及第一性原理计算方法,对水冰体系、纳米受限流体及离子溶液等结构相变及物性的理论研究,涉及物理、化学以及材料等多学科交叉。

开设课程(本科生、研究生):

科研项目:

代表成果(著作、论文、专利等,限10项):

1) Weiduo Zhu†; Yingying Huang†; Chongqin Zhu†; Hong-Hui Wu; Wang Lu; Bai Jaeil; Jinlong Yang; Francisco Joseph S.; Jijun Zhao*; Lan-Feng Yuan*; Xiao Cheng Zeng*; Room temperature electrofreezing of water yields a missing dense ice phase in the phase diagram, Nat. Commun., 2019, 10(1925).

2) Yuan Liu†*, Weiduo Zhu (co-first), Jian Jiang, Chongqin Zhu, Chang Liu, Ben Slater, Lars Ojamäe, Joseph S. Francisco*, and Xiao Cheng Zeng*, Formation of porous ice frameworks at room temperature, Proc. Natl. Acad. Sci. 2021, 118 (31), e2104442118.

3) Wenhui Zhao†, Yunxiang Sun†, Weiduo Zhu† (co-first), Jian Jiang, Xiaorong Zhao, Dongdong Lin, Wenwu Xu, Xiangmei Duan, Joseph S. Franciscod*, and Xiao Cheng Zeng*. Two-dimensional monolayer salt nanostructures can spontaneously aggregate rather than dissolve in dilute aqueous solutions, Nat. Commun., 2021, 12(1): 5602.

4) Huaisheng Ao†, Weiduo Zhu† (co-first), Mengke Liu, Wanqun Zhang, Zhiguo Hou, Xiaojun Wu,* Yongchun Zhu,* and Yitai Qian*, High-Voltage and Super-Stable Aqueous Sodium-Zinc Hybrid Ion Batteries Enabled by Double Solvation Structures in Concentrated Electrolyte. 2021, Small Methods, 2100418.

5) Weiduo Zhu; YinBo Zhu; Lu Wang; Qiang Zhu; Wen-Hui Zhao; Chongqin Zhu; Jaeil Bai; Jinlong Yang; Lan-Feng Yuan*; HengAn Wu*; Xiao Cheng Zeng*; Water Confined in Nanocapillaries: Two-Dimensional Bilayer Square-like Ice, J. Phys. Chem. C, 2018, 122(12): 6704-6712.

6) Weiduo Zhu; Wen-Hui Zhao; Lu Wang; Di Yin; Min Jia; Jinlong Yang; Xiao Cheng Zeng*; Lan-Feng Yuan*; Two-dimensional interlocked pentagonal bilayer ice: how do water molecules form a hydrogen bonding network?, Phys. Chem. Chem. Phys., 2016, 18(21): 14216-14221.

获奖荣誉:

个人(实验室)主页: