王晓璇,女,1994年生,辽宁丹东人,博士,内聘副教授,硕士生导师。主要从事电化学催化方向的研究,近年来以第一作者和通讯作者AngewAppl. Catal. BCEJJ. Phys. Chem. Lett.J. Rare Earth.等期刊发表SCI论文10篇,总影响因子累积约240,累计参与发表SCI论文25篇(一区以上),申请发明专利4项,授权发明专利一项,参与国家自然科学基金面上项目3主持辽宁省教育厅和科技厅项目各一项

Ø 教育及工作经历

2013.09-2017.06     沈阳理工大学       高分子材料与工程          工学学士

2017.09-2020.01     东北大学           应用化学                  工学硕士

2020.09-2024.06     北京化工大学       化学工程与技术            工学博士

2024.06 -至今       辽宁工业大学       金沙检测线路js69            

Ø 研究方向

1. 过渡金属基材料的制备及电催化性能研究

2. 新能源材料与器件的研发及应用

Ø 科研课题

1. 国家自然科学基金面上项目,电催化剂表界面内建电场的精准构筑、表征及其诱导增强催化性能的机理研究,22379006,参与

2. 国家自然科学基金联合基金项目,基于多功能绿色药剂和多孔碳电极的循环冷却水高效利用技术与原理,U20A20154,参与

3. 国家自然科学基金面上项目,二氧化锰表界面内建电场的构筑及超级电容器中电荷转移机制,22279005,参与

4.  辽宁省教育厅项目,钨基氧化物微环境的精准调控及其对电催化合成氨,No. LJ212410154004主持

5.  辽宁省科技厅联合计划面上项目,对称性破缺的钴基氧化物材料及其电催化固氮机理研究,2025-MSLH-333主持

Ø 代表性论文及专利

发表论文:

1. X-X Wang,...Y-M Yan*, et al. Optimizing electrocatalytic nitrogen reduction via interfacial electric field modulation: elevating d-Band center in WS2-WO3 for enhanced intermediate adsorption [J]. Angew. Chem. Int. Ed. 2023, e202303794. (IF: 16.6)

2. X-X Wang,...Y-M Yan*, et al. Interfacial electric field triggered N2 activation for efficient electrochemical synthesis of ammonia[J]. Appl. Catal. B Environ., 2023, 322: 122130. (IF: 22.1)

3. X-X Wang,...Y-M Yan*, et al. Enhancing interfacial electric field in WO3-C3N4 through fermi level modulation for electrocatalytic nitrogen reduction[J]. Appl. Catal. B Environ., 2023, 339: 123126. (IF: 22.1)

4. X-X Wang,...Y-M Yan*, et al. Modulating d-orbital occupancy via a coupled interfacial-local electric field for electrocatalytic N2 fixation. Appl. Catal. B Environ., 2024, 345: 123700. (IF: 22.1)

5. X-X Wang,...Y-M Yan*, et al. Enhanced electrocatalytic nitrogen reduction inspired by a lightning rod effect on urchin-like Co3O4 catalyst[J]. Chem. Eng. J., 2022, 450: 138316. (IF: 15.1)

6. X-X Wang, X-X Xu*, Loading of Cluster-Based Coordination Compound on Biomass Derived N‑Doped Mesoporous Carbon Matrix: A Bifunctional Electrocatalyst for Overall Water Splitting, ACS Sustainable Chem. Eng., 2018, 6, 10282-10288.(IF=8.4)

7. X-X Wang, X-X Xu,* Zn-H+ Battery, Versatile Energy Conversion Equipment for Electricity Generation and H2 Production Simultaneously, ACS Sustainable Chem. Eng., 2019, 7, 10979-10985. (IF=8.4).

8. X-X Wang, X-X Xu,* Combination of Zn-NiCo2S4 and Zn-Air Batteries at the Cell Level: A Hybrid Battery Makes the Best of Both Worlds. ACS Sustainable Chem. Eng., 2019, 7, 12331-12339. (IF=8.4)

9. S-Y Li, X-X Wang, et al. Boosted N2 Activation through 4f-2p-3d orbital hybridization for efficient nitrate electrosynthesis [J]. Adv. Funct. Mater., 2023, 2306098. (IF: 19.0)

10. X-J Wang, W-K Ren, L-L Shi, J-X Li, Y-M Liu, W-J Fu, N-N Wu,* X-X Wang,* Y-M Yan*, Stabilization of Cu+ Sites in Cu2O PdO Heterostructures via Orbital Engineering for Enhanced Electrochemical CO2 Reduction to Ethylene[J]. J. Phys. Chem. Lett. 2025, 16, 3063-3071. (IF: 4.6)

11. J-X Li, J. Wang, G-X Wang, S-L Zhao, Z-Y Yang, X-X Wang, Y-M Yan, CeO2/ZnO heterojunction as an efficient catalyst for electrocatalytic nitrogen reduction reaction via an “electron pump” effect. J. Rare Earth. 2026,44, 698-703. (IF: 7.2)

在投论文:

1. H. Che, X-X Wang*a, et al. Enhancing electrocatalytic nitrogen reduction on Ce-WO3 catalysts through atomically local electric field effect: accelerated electron transfer and enhanced nitrogen activation. JMCA , in revise. (IF: 9.5)

2. X-X Wang*a, H. Che,  et al. Optimizing Intermediate Hydrogenation via Atomically Local Electric Field for Efficient Electrocatalytic Nitrogen Fixation. App. Catal. B: Environ., in revise. (IF: 22.1)

 

申请专利:

1. 严乙铭, 王晓璇, 赵瑞. 用于ENRR的电催化材料CoO-Co3O4异质结的制备方法: ZL 2021 1 1280128.4. 2023-12-15. (授权)

2. 王晓璇, 车昊, 王奕博, 罗琪. 一种电催化氮还原催化剂Ce-WO3的制备方法: 202511323475.9.  2025-09-16 .

3. 王晓璇, 车昊, 郭静玟. 一种氮还原用Al掺杂WO3催化剂的制备方法: 202610036038.7. 2026-01-12.

4. 王晓璇, 车昊, 郭静玟, 郭维洋, 朱鸿赫. 一种原位合成Mo-WO3氮还原电催化剂的制备方法:202610165875.X. 2026-02-05.

Ø 研究生招生

本课题组招收具有钻研、探索和创新精神,对材料科学化学具有浓厚兴趣,拥有材料科学化学工程及相近专业背景的硕士研究生。

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