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闫理停
发布时间:2023-02-21 发布者: 浏览次数:

闫理停简历


姓名:闫理停

邮箱:yanlt@qlu.edu.cn

个人网页:https://mse.qlu.edu.cn/2020/0111/c1917a141917/page.htm

教育工作经历:

       齐鲁工业大学(山东省科学院),材料科学与工程学院,副教授/硕导

        

博士/硕士招生方向:

        材料科学与工程/材料化工

研究领域:

       1、金属有机配位化合物(MOFs)的定向合成、结构设计及其应用研究

       2、能源储存与转化的应用研究,包括电催化、电池等。

       3、基于第一原理的理论计算与模拟研究


学术成果:

1. Shuo Zhang1, Huimin Jiang1, Liting Yan*, YanchaoZhao, Lingzhi Yang, Qiuju Fu, Dawei Li, Jun Zhang*, Xuebo Zhao*, Self-Terminating Surface Reconstruction Induced by High-Index Facets of Delafossite for Accelerating Ammonia Oxidation Reaction Involving Lattice Oxygen. Small, 2023, DOI: 10.1002/smll.202207727. (JCR Q1,IF: 15.153)

2. Lingzhi Yang, Liting Yan*, Weijing Niu, Yan Feng, Qiuju Fu, Shuo Zhang, Yinhang Zhang, Liangjun Li, Xin Gu, Pengcheng Dai, Dandan Liu, Qingbin Zheng*, Xuebo Zhao*, Adsorption in Reversed Order of C2 Hydrocarbons on an Ultramicroporous Fluorinated Metal-Organic Framework. Angewandte Chemie International Edition, 2022, 61(25): e202204046. (JCR Q1,IF: 16.823, Time cited 10)

3. Hongyan Yao, Liting Yan*, Jianxing Shen*, Tailin Wang, Pan Chen, Xiaotong Cong, Shuo Zhang, Huimin Jiang, Xuebo Zhao, Controllably Regulating Ion Transport in Lithium Metal Batteries via Pore Effect of Metal-Organic Framework-based Separators. Applied Surface Science, 2022, 589: 152885  (JCR Q1,IF: 7.392, Time cited 6)

4. Shuo Zhang, Liting Yan*, Huimin Jiang, Lingzhi Yang, YanchaoZhao, Xue Yang, Yameng Wang, Jianxing Shen, Xuebo Zhao*, Facile Fabrication of a Foamed Ag3CuS2 Film as an Efficient Self-Supporting Electrocatalyst for Ammonia Electrolysis Producing Hydrogen. ACS Applied Materials & Interfaces, 2022, 14(7): 9036–9045. (JCR Q1,IF: 10.383, Time cited 1)

5. Xue Yang, Liting Yan*, Xiangjun Kong*, Shujiang Liu*, Xuebo Zhao*,  Metal-organic-framework-based Single-atomic Catalysts for Energy Conversion and Storage: Principles, Advances, and Theoretical Understandings. Advanced Sustainable Systems, 2022, 6 (1): 2100281. (JCR Q1,IF: 6.737)

6. YanchaoZhao, Liting Yan*, Xuebo Zhao*, Development of Carbon-based Electrocatalysts for Ambient Nitrogen Reduction Reaction: Challenges and Perspectives. ChemElectroChem, 2022, 9 (3): e202101126. (Cover Feature, JCR Q2,IF: 4.782, Time cited 8)

7. Huimin Jiang, Liting Yan*, Shuo Zhang, YanchaoZhao, Xue Yang, Yameng Wang,  Jianxing Shen, Xuebo Zhao*, and Lianzhou Wang*,  Electrochemical Surface Restructuring of Phosphorus Doped Carbon@MoP Electrocatalysts for Hydrogen Evolution. Nano-Micro Letters, 2021, 13 (1): 215. (JCR Q1,IF: 23.655, Time cited 29)

8. Shuo Zhang, YanchaoZhao, Liting Yan*, Huimin Jiang, Xue Yang, Yameng Wang, Hexue Song, Xuebo Zhao*, Electrochemical ammonia oxidation reaction on defect-rich TiO nanofibers: Experimental and theoretical studies. International Journal of Hydrogen Energy, 2021, 46 (79): 39208-39215. (JCR Q2,IF: 7.139, Time cited 3)

9. Shuo Zhang1, Pengcheng Dai1, Haijun Liu, Liting Yan*, Hexue Song, Dandan Liu, Xuebo Zhao*, Metal-organic framework derived porous flakes of cobalt chalcogenides (CoX, X = O, S, Se and Te) rooted in carbon fibers as flexible electrode materials for pseudocapacitive energy storage. Electrochimica Acta, 2021, 369: 137681. (JCR Q2,IF: 7.336, Time cited 9)

10. Liting Yan*, Yulin Xu, Pan Chen, Shuo Zhang, Huimin Jiang, Lingzhi Yang, Ying Wang, Li Zhang, Jianxing Shen*, Xuebo Zhao*, and Lianzhou Wang*, A Freestanding 3D Heterostructure Film Stitched by MOF-derived Carbon Nanotube Microsphere Superstructure and Reduced Graphene Oxide Sheets: A Superior Multifunctional Electrode for Overall Water Splitting and Zn–Air Batteries. Advanced Materials, 2020, 32 (48): 2003313. (Inside Back Cover, JCR Q1,IF: 32.086, Time cited 186, Highly Cited Paper)

11. Shuo Zhang1, Pengcheng Dai1, Haijun Liu, Liting Yan*, Hexue Song, Dandan Liu, and Xuebo Zhao*, Nanoantenna Featuring Carbon Microtubes Derived from Bristle Fibers of Plane Trees for Supercapacitors in an Organic Electrolyte. ACS Applied Energy Materials, 2020, 3(12): 12627-12634. (JCR Q2,IF: 6.959, Time cited 9)

12. Pengcheng Dai1, Shuo Zhang1, Haijun Liu, Liting Yan*, Xin Gu, Liangjun Li, Dandan Liu, Xuebo Zhao*, Cotton Fabrics-Derived Flexible Nitrogen-Doped Activated Carbon Cloth for High-Performance Supercapacitors in Organic Electrolyte. Electrochimica Acta, 2020, 354: 136717. (JCR Q2,IF: 7.336, Time cited 30)

13. Pan Chen1, Huimin Ren1, Liting Yan*, Jianxing Shen*, Tailin Wang, Guangda Li, Shunwei Chen, Xiaotong Cong, Jixun Xie, Wei Li, Metal–Organic Frameworks Enabled High-Performance Separators for Safety-Reinforced Lithium Ion Battery. ACS Sustainable Chemistry & Engineering, 2019, 7(19): 16612-16619. (JCR Q1,IF: 9.224, Time cited 30)

14. Liting Yan, Huimin Jiang, Ying Wang, Liangjun Li Xin Gu, Pengcheng Dai, Dandan Liu, Si-Fu Tang, Guoming Zhao, Xuebo Zhao*, K. Mark Thomas*, One-step and Scalable Synthesis of Ni2P Nanocrystals Encapsulated in N,P-codoped Hierarchical Porous Carbon Matrix using a Bipyridine and Phosphonate linked Nickel Metal–organic Framework as Highly Efficient Electrocatalysts for Overall Water Splitting. Electrochimica Acta, 2019, 297: 755-766. (JCR Q2,IF: 7.336, Time cited 33)

15. Liting Yan, Huimin Jiang, Yanlong Xing, Ying Wang, Dandan Liu, Xin Gu, Pengcheng Dai, Liangjun Li, Xuebo Zhao*, Nickel Metal-Organic Framework Implanted on Graphene and Incubated to be Ultrasmall Nickel Phosphide Nanocrystals Acts as a Highly Efficient Water Splitting Electrocatalyst. Journal of Materials Chemistry A, 2018, 6(4): 1682-1691. (JCR Q1,IF: 14.511, Time cited 153)

16. Liting Yan, Lei Cao, Pengcheng Dai, Xin Gu, Dandan Liu, Liangjun Li,Ying Wang, Xuebo Zhao*, Metal-Organic Frameworks Derived Nanotube of Nickel–Cobalt Bimetal Phosphides as Highly Efficient Electrocatalysts for Overall Water splitting. Advanced Functional Materials, 2017, 27 (40): 1703455. (JCR Q1,IF: 19.924, Time cited 560, ESI Hot Paper, Highly Cited Paper)

17. Liting Yan, Pengcheng Dai, Ying Wang, Xin Gu, Liangjun Li, Lei Cao, Xuebo Zhao*, In Situ Synthesis Strategy for Hierarchically Porous Ni2P Polyhedrons from MOFs Templates with Enhanced Electrochemical Properties for Hydrogen Evolution. ACS Applied Materials & Interfaces, 2017, 9(13): 11642-11650. (JCR Q1,IF: 10.383, Time cited 145)

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