陈宇晴

  • 性 别:
  • 职称:讲师
  • 学 历:博士研究生
  • 学院:化学化工学院
  • 系部所:化学工程系
  • 执教层次:
  • 电话:
  • 电子邮箱:chenyq0178@hnust.edu.cn

基本情况

陈宇晴,2023年博士毕业于湖南大学化学工程与技术专业,同年进入湖南科技大学化学化工学院工作。近5年在Adv. Funct. Mater., ACS Nano, J. Mater. Chem. A, J. Catal., ACS Sustain Chem Eng, Appl. Catal. B-Environ.,Chem Eng J., ACS Appl. Mater. Inter. 等高水平期刊杂志发表十余篇学术论文,其中以第一作者发表SCI一区论文5篇;参加国内学术会议5次,在大会做口头报告2次、墙报展示3次;参与国家重点研发计划、省部级重点研发计划、自然科学基金面上项目等多个项目。

学习经历

2019-2023   湖南大学      化学工程与技术    博士

2016-2019      北京化工大学       制药工程             硕士

2012-2016      北京化工大学    化学工程与工艺     学士



工作经历

2023.7至今 湖南科技大学 化工系  讲师

承担课程

《化工原理》、《表面活性剂基础与应用》

代表性论文

[1] Yuqing Chen, Jianing Mao, Hu Zhou, Lingli Xing, Shanshan Qiao, Jili Yuan, Bingbao Mei, Zengxi Wei, Shuangliang Zhao, Yanhong Tang ,Chengbin Liu. Coordination Shell Dependent Activity

of CuCo Diatomic Catalysts for Oxygen Reduction, Oxygen Evolution, and Hydrogen Evolution Reaction. Adv. Funct. Mater. 2024, 34, 2311664.

[2] Yuqing Chen, Shanshan Qiao, Yanhong Tang, Yi Du, Danyu Zhang, Wenjie Wang, Hao Zhang, Xuhui Sun, and Chengbin Liu. Double-Faced Atomic-Level Engineering of Hollow Carbon

Nanofibers as Free-Standing Bifunctional Oxygen Electrocatalysts for Flexible Zn−Air Battery. ACS Nano 2022, 16, 15273−15285. 

[3] Yuqing Chen, Shanshan Qiao, Yanhong Tang, Yi Du, Danyu Zhang, Wenjie Wang, Haijiao Xie and Chengbin Liu. Precise and scalable fabrication of metal pair-site catalysts enabled by

intramolecular integrated donor atoms. J. Mater. Chem. A, 2022, 10, 25307. 

[4] Yuqing Chen, Wei Liu, Pan Yin, Minghui Ju, Jie Wang, Weiyao Yang, Yusen Yang, Chun Shen. Synergistic effect between Ni single atoms and acid–base sites: Mechanism investigation

into catalytic transfer hydrogenation reaction. Journal of Catalysis 393 (2021) 1–10.

[5] Yuqing Chen, Chun Shen, Jie Wang, Gang Xiao, and Guangsheng Luo. Green Synthesis of Ag−TiO2 Supported on Porous Glass with Enhanced Photocatalytic Performance for Oxidative

Desulfurization and Removal of Dyes under Visible Light. ACS Sustainable Chem. Eng. 2018, 6, 13276−13286.

[6] Jili Yuan, Lin Hu, Jun Huang, Yuqing Chen, Shanshan Qiao, Haibo Xie. Photo/electrochemical urea synthesis via CO2 coupling with nitrogenous small molecules: Status and challenges

for the development of mechanism and catalysts. DOI: 10.1016/j.apcatb.2023.123146

[7] Shanshan Qiao, Yuqing Chen, Yanhong Tang, Jili Yuan, Jiachao Shen, Danyu Zhang, Yi Du, Ziru Li, Dingwang Yuan, Haifang Tang, Chengbin Liu. Oxygen vacancy–rich Cu2O@Cu with

a hydrophobic microenvironment for highly selective Csingle bondC coupling to generate C2H4. Chem. Eng. J. 2022, 454(5490):140321

[8] Danyu Zhang, Kai Yin, Yanhong Tang, Yuanfeng Wei, Haifang Tang, Yi Du, Huiling Liu, Yuqing Chen, Chengbin Liu. Hollow sea-urchin-shaped carbon-anchored single-atom iron as

dual-functional electro-Fenton catalysts for degrading refractory thiamphenicol with fast reaction kinetics in a wide pH range. Chem. Eng. J. 2021, 427:130996

[9] Yi Du, Haifang Tang, Danyu Zhang, Huiling Liu, Yuqing Chen, Zuoyan Zhu, Weijian Yang, Ziru Li, Yanhong Tang, and Chengbin Liu. Boosting Electrocatalytic Oxygen Evolution:

Superhydrophilic/Superaerophobic Hierarchical Nanoneedle/Microflower Arrays of CexCo3–xO4 with Oxygen Vacancies. ACS Appl. Mater. Interfaces 2021, 13, 36, 42843–42851.

[10] Danyu Zhang, Hao Zhang, Yi Du, Haifang Tang, Yanhong Tang, Yuqing Chen, Zhimin Wang, Xuhui Sun, Chengbin Liu. Highly efficient production of hydroxyl radicals from oxygen

reduction over Ni-Fe dual atom electrocatalysts for removing emerging contaminants in wastewater. Chem. Eng. Sci. 2023,278(8):118914.

[11] Yi Du, Ziru Li, Huiling Liu, Shanshan Qiao, Yuqing Chen, Zuoyan Zhu, Yanhong Tang, Chengbin Liu. Scalable oxygen-assisted-Fe2+ etching approach towards amorphous/crystalline

structure Fe-Ni2P nanoarray for efficient water splitting. J. Alloy. Compd. 2023, 936:168073

[12] Yi Xuanying, Yuan Jili, Tang Haifang, Du Yi, Hassan Bashir, Yin Kai, Chen Yuqing, Liu Xia. Embedding few-layer Ti3C2Tx into alkalized g-C3N4 nanosheets for efficient photocatalytic

degradation. J. Colloid. Interf. Sci. 2020, 571, 297.

研究方向

  1. 无机催化材料:碳基单原子催化材料的设计与制备 

  2. 新能源储能技术与转换:锌空气电池/燃料电池