分子工程+研究院
王静楠

职 称: 讲师

学 历: 博士研究生

硕士招生专业: 物理化学

博士招生专业:

电子邮件: jingnanwang@fzu.edu.cn

研究方向: 1. 理论与计算化学 2. 电催化水分解,C-N偶联。

课题组网页:

教育工作经历 (Education and working experiences)

2025-至今福州大学化学学院,讲师

2021-2024,天津大学分子+研究院,博士研究生

2018-2021,陕西师范大学物理学与信息技术学院,理学硕士

2016-2017,新疆生产建设兵团,西部计划志愿者

2012-2016,石河子大学理学院,理学学士

科研简介 (Scientific research)

主要从事第一性原理计算、机器学习催化剂筛选和设计、电催化水分解和C-N偶联等研究。目前以第一作者及通讯作者(包含共同)在Nat. Commun.J. Am. Chem. Soc., Angew. Chem. Int. Ed.,等刊物上发表SCI论文20余篇(ORCID: 0009-0004-0111-2140)。

科研项目 (Scientific research projects)

国家自然科学基金青年科学基金项目(C类),2026-2028,主持。

福州大学科研启动基金,2025-2027,主持。


代表性论文 (Representative papers)
  1. Yaming Liu*, Zhenle Hu, Xinrui Zhu, Xinyu Li, Tong Zuo, Yutian Zhao, Guoqiang Liu, Yanting Cheng, Chao Zhi, Jiaguang Meng, Xiang Li, Jingnan Wang*, and Mingshang Jin*.Multimetallic Pt-Based Alloy Nanowires Library as a Platform for Selective Electrocatalytic Oxidation of Ethylene Glycol. ACS Nano 2026, 20, 11, 9428–9439.

  2.  Xianru Lu, Jiannian Yao,  Jingnan Wang*, Xi Wang*,High-throughput screening of dual atom catalysts for oxygen reduction reaction based on machine learning. Chemical Engineering Science 323 (2026) 123178.

  3. Junmeng Li, Xianru Lu , Yue Chen , Yuwu Zhong , Jiannian Yao , Jingnan Wang *, Xi Wang*Machine learning-guided high-throughput screening of dual-atom catalysts for electrochemical C-C coupling. Chemical Engineering Science 320 (2026) 122415.

  4.  Yu Sun, Keying Wang, Yaxin Shi, Mingxuan Zhou, Xing Lin, Guoquan Liao, Hao Guo, Jingnan Wang*, Xi Wang, and Yijun Yang*Spin-State Engineering of Co3+ in ZnCo2O4 for Efficient Electrocatalytic Nitrate Reduction to Ammonia.ACS Sustainable Chem. Eng. 2026, (accepted)

  5. Jingnan Wang#, Kaiheng Zhao#, Yongbin Yao, Fan Xue, Fei Lu, Wensheng Yan, Fangli Yuan, Xi Wang*, Ferromagnetic Fe−TiO2 spin catalysts for enhanced ammonia electrosynthesis.Nat. Commun.2025, 16(1): 1129.

  6. Jingnan Wang#, Qiang Liu#, Ke Li,Yongbin Yao, Jianjian Yang, Xiangnong Ding,Shian Chen, Xi Wang*. Fully-Exposed Pt Cluster@Zeolite catalysts for efficient n-Hexane aromatization.Chem. Eng. Sci.2025, 301: 120715.

  7. Qiang Liu#, Yi Wei#, Lintao Xu, Yongan Yang,Jingnan Wang*, Xi Wang*,Interpretable machine learning-assisted high-throughputscreening of highly active nitrogen fixation dual-atom catalysts.AIChE J.2025: e18866.

  8. Yongbin Yao#,Jingnan Wang#,Fei Lu#, Wenlin Li#, Bingbao Mei#, Lifeng Zhang, Wensheng Yan, Fangli Yuan, Guiyuan Jiang, Sanjaya D. Senanayake*, Xi Wang*, Suppressing COx in oxidative dehydrogenation of propane with dual−atom catalysts.Nat. Commun.2025,16, 4639.

  9. Fei Lu#,Jingnan Wang#,Shanshan Chai, Yan Wang, Yongbin Yao, Xi Wang, Asymmetric coupled binuclear−site catalysts for low−temperature selective acetylene semi−hydrogenation.Angew. Chem. Int. Edit.2025, 64(2): e202414719.

  10. Jingnan Wang#,Kaiheng Zhao#, Ding Yi*, Yongan Yang*, Xi Wang*, Role of single−atom alloy catalysts in electrochemical conversion of carbon dioxide: A theoretical study.Chem. Eng. Sci.2024, 290: 119910.

  11. Jingnan Wang#,Rui Yang#, Qiang Liu, Yongan Yang, Xi Wang*, Enhancing electrocatalytic ammonia synthesis through theoretical design of cluster catalysts supported on TiO2 surface.Mater. Today Energy, 2024, 39: 101466.

  12. Jingnan Wang,Haili Zhao, Yuhong Huang*, Fei Ma*, Yongan Yang, Enhanced visible−light photocatalytic activity of direct Z−scheme g−C3N/MX2 (M= Mo, W and X= S, Se) nanosheets from theoretical insights.J. Phys. Chem. Solids2024, 188: 111889.

  13. Qiang Liu#,Jingnan Wang#, *, Yongan Yang, Xi Wang*, The electrochemical synthesis of urea on triatomic cluster/Cu catalysts: A theoretical study.Surf. Interfaces2024, 55: 105349.

  14. Yanpeng Yang, Qiang Liu,Jingnan Wang*, Panpan Li, Chenglin Miao, Jianliang Liu, Yijun Yang*, Jieguang Wang*, Xi Wang*. Hydroxy-or chlorine-anchored Pt single-atom in Al2O3: Which is better for propane dehydrogenation?.AIChE J.2024, 70(2): e18288.

  15. Jingnan Wang,Sha Li*, Qiang Liu, Kaiheng Zhao, Yongan Yang, Xi Wang*, Direct electrochemical synthesis of acetamide from CO2 and N2 on a single−atom alloy catalyst.ACS Appl. Mater. Interfaces2023, 15(46): 53436−53445.

  16. .Lu Pan#,Jingnan Wang#,Fei Lu#, Qiang Liu#, Yuhang Gao, Yan Wang, Jingzhe Jiang, Chao Sun, Jian Wang, Xi Wang*, Single−atom or dual−atom in TiO2 nanosheet: which is the better choice for electrocatalytic urea synthesis?Angew. Chem. Int. Edit.2023, 135(8): e202216835.

  17. Jingnan Wang, Yuhong Huang*, Fei Ma*, Jianmin Zhang, Xiumei Wei and Jing Liu, Strain engineering the electronic and photocatalytic properties of WS2/blue phosphene van der Waals heterostructures.Catal. Sci. Technol.2021, 11: 179

  18. Jingnan Wang,Yuhong Huang*, Gangqiang Zhu, Jianmin Zhang, Xiumei Wei, Fei Ma, Interfacial defect engineering the electronic states and photocatalytic properties of blue phosphorus/WS2 heterostructures.J. Alloy. Compd.2021, 859: 157873.

  19. Jingnan Wang, Yuhong Huang*, Fei Ma*, Jianmin Zhang, Xiumei Wei, Gangqiang Zhu, Peiyuan Du. Strain engineering the electronic and photocatalytic properties of g-C6N6/graphene heterostructures.Mater.Today Commun.2021, 26: 101969.

  20. Jingnan Wang, Yuhong Huang*, Fei Ma*, Jianmin Zhang, Xiumei Wei, Gangqiang Zhu, Electronic states and photocatalytic performances of SnS2−based binary and ternary vdW heterostructures.J. Alloy. Compd.2020, 849: 156627.

  21. Jingnan Wang, Yuhong Huang, Jiaxin Guo, Jianmin Zhang, Xiumei Wei, Fei Ma. Optoelectronic response and interfacial properties of BiOI/BiOX (X= F, Cl, Br) heterostructures based on DFT investigation.J.Solid.State Chem.2020, 284: 121181.

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