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新能源电池学院关于拟吸收胡延杰博士加入学术委员会公示
供稿人: 发布时间:2023-02-10 点击数: 打印本文

 

个人简历

胡延杰

出生年月

1987.06

河南登封

 

36

 

 

参加工作时间

2023.01

研究方向

电催化

学历及工作背景

(1) 2009.9-2013.7 宁夏理工学院,本科,应用化

(2) 2013.7-2016.9 郑州大学,硕士,化学工程,过程分离

       (3) 2016.9-2020.9 重庆大学,博士,化学工程,电催化过程分离


       (4) 2020.10-2022.12 广东工业大学,博士后,材料科学,电催化


       (5) 2023.1-至今  宜宾职业技术学院

个人

成果

发表论文及专利

[1] Hu Y., Lu D., Li Y.*, et al. In-situ construction of 3D low-coordinated bismuth nanosheets@Cu nanowires core-shell nanoarchitectures for superior CO2 electroreduction activity, Journal of Materials Chemistry A, 2023.

[2] Hu Y., Wang X., Li Y. *, et al. In-situ engineering 3D conductive core-shell nano-networks and electronic structure of bismuth alloy nanosheets for efficient electrocatalytic CO2 reduction, Science China-Materials, 2023.

[3] Shen T., Teng L., Hu Y.*, Shen W.. Systematic screening procedure and innovative energy-saving design for ionic liquid-based extractive distillation process. Frontiers of Chemical Science and Engineering, (2022) 1-12.

[4] Hu Y., Feng J., Zhang X., et al. Efficient electrochemical reduction of CO2 to CO in ionic liquid, ChemistrySelect, 6 (2021) 9873–9879.

[5] Hu Y., Su Y., Jin S., et al. Systematic approach for screening organic and ionic liquid solvents in homogeneous extractive distillation exemplified by the tert-butanol dehydration. Separation and Purification Technology, 211 (2019) 723-737.

[6] Hu Y., Li F., Wei S., et al. Design and optimization of the efficient extractive distillation process for separating the binary azeotropic mixture methanol-acetone based on the quantum chemistry and conceptual design, Separation and Purification Technology, 242 (2020) 116829.

[7] Zhang B., Shan J., Wang X. B., Hu Y., Li Y.*. Ru/Rh cation doping and oxygen-vacancy engineering of FeOOH nanoarrays@Ti3C2Tx MXene heterojunction for highly-efficient and stable electrocatalytic oxygen evolution. Small, 18 (2022).

[8] Lu D., Wang X., Hu Y., et al. Expediting stepwise sulfur conversion via spontaneous built-in electric field and binary sulfiphilic effect of conductive NbB2-MXene heterostructure in lithium–sulfur batteries. Advanced Functional Materials, 2023.

[9] 张香平; 杨英梁; 高红帅; 聂毅; 白银鸽; 袁磊; 胡延杰; 贾永高. 在芳香酯类离子液体体系中电化学还原CO2 制草酸的方法, 2020-10-27, 中国, 201910571800. 1.

 

 

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