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基本信息


  

 

 

 

郭浩然

 

 

职称:讲师

性别:男

 

 

职务:专任教师

办公电话:-

 

 

移动电话:-

家庭电话:-

 

 

家庭住址:-

电子邮箱:guohaoran@xtu.edu.cn

 

 

 

 


工作学习经历


  

2011.9-2015.6

西南科技大学

本科

2016.9-2019.6

电子科技大学

硕士研究生

2019.9-2023.6

中国科学院大学

博士研究生

2023.9-至今

湘潭大学化学学院

专任教师

 

 

主讲课程


  

结构化学》《物理化学实验

 


研究方向


  

电催化理论计算

 


主要学术成果


  

项目资助

1. 国家资助博士后研究人员计划C档资助,GZC20232203

2. 湖南省自然科学基金青年项目,2024JJ6424

3. 湘潭大学人才引进科研启动项目

近年来主要学术成果

1. Zhang, H.; Guo, H.*; Zhang, F.; Zhang, J.; Cheng, Y.; Ma, Y.; Ma, L.; Qi, L.*, Cascade electrocatalysis via integration of ruthenium clusters and yttrium single atoms for a boosted alkaline hydrogen evolution reaction. Energy & Environmental Science 2025, 18 (12), 6141-6153.

2. Wu, Z.; Guo, H.*; Ren, K.; Wang, Y.; Zhang, H.; Zhang, F.; Liu, L.; Li, G.; Qi, L.*, Photoelectrochemical Glycerol Valorization Achieving an Internal Quantum Efficiency Over 180% via Current Doubling. Advanced Materials 2025, e16504.

3. Niu, L.; Wang, Y.; Yin, H.; Wang, T.; Guo, H.*; Xian, H.; Sun, X.; Guo, X.; Li, T.*, Promoting Active Hydrogen Supply and Nitrate Adsorption by Disordering Tetrahedral-Octahedral Structure of CuAl2O4-δ for Efficient Nitrate Reduction. Advanced Materials 2025, e17303.

4. Huang, H.; Guo, H.*; Pei, Y.*, Screening of C3N-Supported Monometallic Atom Catalysts for Selective C=O Hydrogenation of Crotonaldehyde. ACS Catalysis 2025, 15 (18), 16121-16131.

5. Lv, Y.; Ren, J.; Jiang, M.; Wang, R.; Guo, H.*; Sun, X.; Guo, X.; Li, T.*, A-Site Deficiency-Mediated Creation of Oxygen Vacancies in LaMnO3-δ Nanofibers for Efficient Nitrate Reduction. ACS Catalysis 2025, 15 (10), 8094-8102.

6. Zhang, J.; Zhang, Y.; Zhou, J.; Guo, H.*; Qi, L.*, Electronic Engineering of Crystalline/Amorphous CoP/FeCoPx Nanoarrays for Efficient Water Electrolysis. Small Methods 2025, 9 (3), 2401139.

7. Xu, M.; Dong, S.; Guo, H.; Tao, Z.; Jeon, Y.; Zhang, Z.; Chen, Z.; Su, H.; Liu, Z.; Lin, Y.; Irvine, J. T. S.; Li, T.; Chen, D., Defective perovskite supported palladium-nickel nanocatalyst for effective electrochemical nitrate reduction. Applied Catalysis B: Environment and Energy 2025, 375, 125433.

8. Zhang, Z.; Niu, A.; Lv, Y.; Guo, H.*; Chen, J. S.; Liu, Q.; Dong, K.; Sun, X.; Li, T.*, NbC Nanoparticles Decorated Carbon Nanofibers as Highly Active and Robust Heterostructural Electrocatalysts for Ammonia Synthesis. Angewandte Chemie International Edition 2024, 63 (30), e202406441.

9. Hu, P.; Zhang, X.; Xu, M.; Lv, Y.; Guo, H.*; Chen, J. S.; Ye, X.; Xian, H.; Sun, X.; Li, T.*, In-situ exsolution of FeCo nanoparticles over perovskite oxides for efficient electrocatalytic nitrate reduction to ammonia via localized electrons. Applied Catalysis B: Environment and Energy 2024, 357, 124267.

10. Zhang, H.; Guo, H.†; Li, Y.; Zhang, Q.; Zheng, L.; Gu, L.; Song, R.*, The Guest Doping Effects of Fe on Bimetallic NiCo Layered Double Hydroxide for Enhanced Electrochemical Oxygen Evolution Reaction: Theoretical Screening and Experimental Verification. Advanced Functional Materials 2023, 33 (48), 2304403.

11. Du, H.; Guo, H.; Wang, K.; Du, X.; Beshiwork, B. A.; Sun, S.; Luo, Y.; Liu, Q.; Li, T.*; Sun, X., Durable Electrocatalytic Reduction of Nitrate to Ammonia over Defective Pseudobrookite Fe2TiO5 Nanofibers with Abundant Oxygen Vacancies. Angewandte Chemie International Edition 2023, 62 (5), e202215782.

12. Dong, S.; Niu, A.; Wang, K.; Hu, P.; Guo, H.*; Sun, S.; Luo, Y.; Liu, Q.; Sun, X.; Li, T.*, Modulation of oxygen vacancy and zero-valent zinc in ZnCr2O4 nanofibers by enriching zinc for efficient nitrate reduction. Applied Catalysis B: Environmental 2023, 333, 122772.

13. Guo, H.; Yuan, P.; Xu, M.; Zhang, Y.; Song, R.*, Toward Rational Design of the Two-Dimensional h-WO3/ZrGe2P4 Heterostructure for N2/CO2 Reduction: Incorporating Multiple Electronic Modulation Engineering. The Journal of Physical Chemistry C 2023, 127 (30), 14784-14796.

14. Guo, H.; Yuan, P.; Zhao, J.; Zhao, J.; Peng, Q.; Song, R.*, First-principles studies of monolayers MoSi2N4 decorated with transition metal single-atom for visible light-driven high-efficient CO2 reduction by strain and electronic engineering. Chemical Engineering Journal 2022, 450, 138198.

15. Guo, H.; Zhang, H.; Zhao, J.; Yuan, P.; Li, Y.; Zhang, Y.; Li, L.; Wang, S.; Song, R.*, Two-Dimensional WO3-Transition-Metal Dichalcogenide Vertical Heterostructures for Nitrogen Fixation: A Photo(Electro) Catalysis Theoretical Strategy. The Journal of Physical Chemistry C 2022, 126 (6), 3043-3053.

16. Guo, H.; Li, L.; Wang, X.; Yao, G.; Yu, H.; Tian, Z.; Li, B.*; Chen, L., Theoretical Investigation on the Single Transition-Metal Atom-Decorated Defective MoS2 for Electrocatalytic Ammonia Synthesis. ACS Applied Materials & Interfaces 2019, 11 (40), 36506-36514.

17. Li, B.*; Guo, H.; Wang, Y.; Zhang, W.; Zhang, Q.; Chen, L.; Fan, X.; Zhang, W.; Li, Y.; Lau, W.-M., Asymmetric MXene/monolayer Transition Metal Dichalcogenide Heterostructures for Functional Applications. npj Computational Materials 2019, 5 (1), 16.

 

个人简介


  

郭浩然,男,博士。2011年本科就读于西南科技大学,师从徐光亮教授;2016年硕士就读于电子科技大学,师从李白海副教授;2018年进入中国科学院宁波材料所联合培养,师从田子奇研究员与陈亮研究员;2019年博士就读于中国科学院大学,师从宋锐教授。于20236月获得博士学位,20239月加入湘潭大学化学学院裴勇教授团队工作,研究方向为应用于碳氮还原及水分解光/电催化剂的理论开发,运用理论计算研究催化机理,解析电化学现象本质。欢迎感兴趣的同学加入本课题组!

个人学术主页:

ResearchGatehttps://www.researchgate.net/profile/Haoran-Guo-12

Google学术:https://scholar.google.com/citations?user=zqr6cEwAAAAJ&hl=zh-CN&oi=ao

 

 

 

  
 

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