陈立锋 博士生导师  硕士生导师

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联系方式:0551-63600772(办公室) 微信:USTC_LF_CHEN Please contact me using the email as a priority.

学位:博士学位

主要任职:Professor

科学研究

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53. Biomass-Derived Sustainable Dual-Atom Catalysts Enabled Highly Efficient ......, Zhiyong Fang, Wei-Xu Dong, Yong Xu, Weiyi Wang, Weihan Li, Minsi Li, Qiu-Hong Pan, Wei Hu, Jie Zeng*, Shu-Hong Yu*, Li-Feng Chen*, submitted to JACS

52. Layered Solid Brønsted Acid for Dynamic Interfacial pH Regulation Toward Durable Zinc Anodes, Caofeng Niu, Bing Xu, Jiachen Tian, Tongzhuang He, Lizhu Li, Weiqian Tian, Jingyi Wu, Yue Zhu, Huanlei Wang, Jingwei Chen,* and Li-Feng Chen*, Mater. Horiz., 2025, accepted

51. Hierarchical Pore Carbon Nanocages Embedding with CoTe as Sulfur Host: Synergistic Mass Transfer and Polysulfides Catalytic Conversion in Lithium–Sulfur Batteries, Wei-Xu Dong#, Ping Wu#, Lei Hu#, Hao-Nan Guo, Jia-Wei Qian, Li-Feng Chen#,*, Shu-Hong Yu*, CCS Chem., 2025, DOI: 10.31635/ccschem.025.202505569

50. Designing Cellulose Triacetate-Based Universal Binder for High-Voltage Sodium-Ion Battery Cathodes with Enhanced Ionic Conductivity and Binding Strength, Yu-Zhen Zhang, Rong-Hao Wang, Liang Yue, Shuaibo Li, Dong Wang, Lei Hu, Guorui Wang, Yalin Lu, Li-Feng Chen*, Adv. Mater., 2025, 37 (21), 2501531

49. A Sustainable and Scalable Approach for In-Situ Induction of Gradient Nucleation Sites in Biomass-Derived Interface Layers for Ultra-Stable Aqueous Zinc Metal Batteries, Xin Liu#, Jia-Wei Qian#, Jing-Wei Chen#, Yun-Kai Xu, Wei-Yi Wang, Wei-Xu Dong, Wei Hu, Guo-Rui Cai, Jun Lu*, Shu-Hong Yu* & Li-Feng Chen*, Angew. Chem., Int. Ed., 2025, 64 (26), e202504613 (Hot Topic: Biomass Upgrading) (Selected as Cover Paper)

48. Development of Ternary Hydrogel Electrolytes for Superior Gel Thermocells: Exceptional Anti-Drying, Anti-Freezing, and Mechanical Robustness, Ji-Xiang Gui#, Yan Cheng#, Kai Ren#, Ze-Peng Liu#, Zibo Zhu, Zhi-Yong Xue, Yinbo Zhu, Rong-Hao Wang, Gang Pei, Jiehe Sui, Li-Feng Chen*, Adv. Mater., 2025, 37(14), 2420214

47. In Situ Formed Three-Dimensionally Conducting Polymer Electrolyte for Solid-State Lithium Metal Batteries with High Cathode Loading, Zhi-Wei Dong, Yun-Fei Du, Mei Geng, Jia-Xin Guo, Xin Shen*, Wen-Bo Tang, Kai Chen, Li-Feng Chen*, Xiao-Song Liu, Xinbing Cheng*, SusMat, 2025, 5(2), e70004

46. Selective Interface Engineering with Large π-Conjugated Molecules Enables Durable Zn Anodes, Feng Zhang, Qiangqiang Meng, Jia-Wei Qian, Jingwei Chen, Wei-Xu Dong, Kai Chen, Yang-Feng Cui, Shi Xue Dou, Li-Feng Chen*, Angew. Chem., Int. Ed., 2025, 64(15), e202425487

45. Nitrogen-Doped Graphene/Cellulose Fibers Double-Coated Asymmetric Separator for High-Performance Lithium-Sulfur Batteries, Hao-Nan Guo, Wei-Xu Dong, Zhi-Yong Fang, Lei Hu*, Jingwei Chen*, Li-Feng Chen*, Adv. Sustain. Syst., 2025, 9(4), 2401047

44. Towards High-Performance, Flexible, Photo-Assisted All-Solid-State Sodium-Metal Batteries: Screening of Solid-Polymer-Based Electrolytes Coupled with Photoelectrochemical Storage Cathodes, Rong-Hao Wang#, Yu-Zhen Zhang#, Weiyi Wang#, Jia-Hao Ni, Wei Hu, Liang Yue, Wan-Qun Zhang, Gang Pei, Shangfeng Yang, Li-Feng Chen*, Adv. Mater., 2025, 37(13), 2500348

43. Photoexcitation-Enhanced High-Ionic Conductivity in Polymer Electrolytes for Flexible, All-Solid-State Lithium-Metal Batteries Operating at Room Temperature, Rong-Hao Wang#, Weiyi Wang#, Yu-Zhen Zhang#, Wei Hu, Liang Yue, Jia-Hao Ni, Wan-Qun Zhang, Gang Pei, Shangfeng Yang, Li-Feng Chen*, Angew. Chem., Int. Ed., 2025, 137 (5), e202417605

42. MOF-Derived Ultrathin Carbon Nanosheets Integrated with Telluride Nanoparticles: Synergistic Polysulfide Adsorption and Catalytic Sites for Enhanced Sulfur Redox Reactions, Wei Bi, Canhuang Li, Dawei Yang,* Yu-Zhen Zhang, Lei Hu, Qianhong Gong, Jie Zhang, Yongcai Zhang, Mengyao Li, Jishi Wei, Yingtang Zhou* Dan Zhou, Tianli Wu, Li-Feng Chen*, Andreu Cabot, Energy Environ. Sci., 2025, 18 (4), 1929-1940

41. Constructing 3D Crosslinked Macromolecular Networks as a Highly Efficient Interface Layer for Ultra-Stable Zn Metal Anodes, Yi-Fan Qu#, Jia-Wei Qian#, Feng Zhang#, Zibo Zhu, Yinbo Zhu, Zhiguo Hou, Qiangqiang Meng, Kai Chen, Shi Xue Dou, Li-Feng Chen*, Adv. Mater., 2025, 37 (1), 2413370

40. Agar-Based Interface for Suppressing Parasitic Reactions toward High-Performance Aqueous Zn-Ion Batteries, Yi-Fan Qu, Xin Liu, Jia-Wei Qian, Jingwei Chen, Li-Feng Chen*, Batter. Supercaps, 2024, 7 (9), e202400159

39. Super-Stretchable and High-Energy Micro-Pseudocapacitors Based on MXene Embedded Ag Nanoparticles, Zhiqian Cao#, Yinbo Zhu#, Kai Chen#, Quan Wang, Yujin Li, Xianjun Xing, Jie Ru*, Ling-Guo Meng, Jie Shu, Netanel Shpigel, Li-Feng Chen*, Adv. Mater., 2024, 36 (26), 2401271

38. Integration of Confinement Crosslinking and In Situ Grafting for Constructing Artificial Interphase toward Stabilized Zinc Anodes, F. Zhang, J. W. Qian, W. X. Dong, Y. F. Qu, K. Chen, J. Chen, Y.- F. Cui, L. F. Chen*, Energy Environ. Sci., 2024, 17, 7258-7270

37. Sodium citrate electrolyte additive to improve zinc anode behavior in aqueous zinc-ion batteries, Xin Liu, Liang Yue, Wei-Xu Dong, Yi-Fan Qu, Xianzhong Sun, Li-Feng Chen*, Batteries, 2024, 10 (3), 97 (Invited Paper)

36. Rational Design of Cross-Linked N-Doped C-Sn Nanofibers as Free-Standing Electrodes towards High-Performance Li-Ion Battery Anodes, Ying Li, Yushen Zhao, Kai Chen, Xu Liu, Tingfeng Yi, Li-Feng Chen*, Acta Phys. -Chim. Sin., 2024, 40 (3), 2305007 (Invited Paper) (Selected as Cover Paper)

35. Manipulating Oxygen Vacancies to Spur Ion Kinetics in V2O5 Structures for Superior Aqueous Zinc-Ion Batteries, Jia-Jia Ye#, Pei-Hua Li#, Hao-Ran Zhang, Zong-Yin Song, Tianju Fan, Wanqun Zhang, Jie Tian, Tao Huang, Yitai Qian, Zhiguo Hou*, Netanel Shpigel, Li-Feng Chen* and Shi Xue Dou*, Adv. Funct. Mater., 2023, 33 (46), 2305659

34. A facile tip shielding strategy for highly reversible Zn anode, Feng Zhang, Jiawei Qian, Weixu Dong, Yifan Qu, Jingwei Chen*, Hao Wang*, Li-Feng Chen*, Chem. Eng. J., 2023, 478, 147406

33. Biomass-derived two-dimensional carbon materials: synthetic strategies and electrochemical energy storage applications, Wei-Xu Dong†, Yi-Fan Qu†, Xin Liu, Li-Feng Chen*, FlatChem, 2023, 37, 100467, Invited Review

32. Three-dimensional synergistic ionic-electronic conductor host assisted high-performance Zn metal battery, Jian-Hua Wang, Wei-Xu Dong, Jingwei Chen*, Li-Feng Chen*, Ionics, 2023, 29, 3097-3107

31. Three-Dimensional Zinc-Seeded Carbon Nanofiber Architectures as Lightweight and Flexible Hosts for a Highly Reversible Zinc Metal Anode, Jian-Hua Wang#, Li-Feng Chen#,*, Wei-Xu Dong, Kailong Zhang, Yi-Fan Qu, Jia-Wei Qian, Shu-Hong Yu*, ACS Nano, 2023, 17 (19), 19087-19097

30. Recent Advance on the Application of Carbon Materials for Anodes of Aqueous Zinc Ion Batteries, Jianhua Wang, Xin Liu, Li-Feng Chen*, JAHUT, 2023, 40 (3), 275-287, Invited Paper

29. Biomass-based biomimetic-oriented Janus nanoarchitecture for efficient heavy-metal enrichment and interfacial solar water sanitation, H. Y. Zhao, W. X. Dong, Y. Deng, L. F. Chen*, C. F. Zhao, C. L. Zhang, J. Zhou, Y. F. Qu, Y. S. Li, D. J. Li, S. H. Yu*, Interdiscip. Mater., 2022, 1 (4), 537-547, selected as Cover Paper (Outside Back Cover)

28. Towards high-performance aqueous sodium ion batteries: constructing hollow NaTi2(PO4)3@C nanocube anode with Zn metal-induced pre-sodiation and deep eutectic electrolyte, Z. Hou, X. Zhang, J. Chen, Y. Qian, L.F. Chen*, Pooi See Lee*, Adv. Energy Mater., 2022, 12 (14), 2104053

27. Metal-organic frameworks derived TiO2/carbon nitride heterojunction photocatalyst with efficient catalytic performance under visible light. S. Liu*, Q. Zou, Y. Ma, D. Chi, R. Chen, H. Fang, W. Hu, K. Zhang*, L. F. Chen*, Inorg. Chim. Acta, 2022, 536, 120918

26. Biomimetic Design of Macroporous 3D Truss Materials for Efficient Interfacial Solar Steam Generation, H. Y. Zhao, J. Huang, J. Zhou, L. F. Chen, C. Wang, Y. Bai, J. Zhou, Y. Deng, W. X. Dong, Y. S. Li, S. H. Yu*, ACS Nano, 2022, 16 (3), 3554-3562

25. Uniformly Bimetal-Decorated Holey Carbon Nanorods Derived from Metal-Organic Framework for Efficient Hydrogen Evolution, L. F. Chen, C. C. Hou, L. Zou, M. Kitta, Q. Xu*, Sci. Bull., 2021, 66 (2), 170-178

24. Lotus-Inspired Evaporator with Janus Wettability and Bimodal Pores for Solar Steam Generation H. Y. Zhao, J. Zhou, Z. L. Yu, L. F. Chen, H. J. Zhan, H. W. Zhu, J. Huang, L. A. Shi, S. H. Yu*, Cell Rep. Phys. Sci., 2020, 1 (6), 100074

23. Design of Metal-Organic Framework-Based Photocatalysts for Hydrogen Generation, S. Liu, C. Zhang, Y. Sun, Q. Chen, L. He, K. Zhang*, J. Zhang, B Liu*, L. F. Chen*, Coord. Chem. Rev., 2020, 413, 213266

22. Converting MOFs into Amination Catalysts. L. F. Chen, Q. Xu*, Science, 2017, 358 (6361), 304-305

21. Pyridinic and Pyrrolic Nitrogen-Enriched Carbon as a Polysulfide Blocker for High-Performance Lithium-Sulfur Batteries, K. Zhang; L. Wang, W. Cai, L. F. Chen*, D. Wang, Y. Chen, H. Pan, L. Wang*, Y. Qian*, Inorg. Chem. Front., 2019, 6 (4), 955-960

20. Metal-organic frameworks and their composites: synthesis and electrochemical applications, F. Y. Yi, R. Zhang, H. Wang, L. F. Chen, L. Han, H. L. Jiang*, Q. Xu*, Small Method, 2017, 1 (11), 1700187

19. Biotemplated Synthesis of Three-Dimensional Porous MnO/C-N Nanocomposites from Renewable Rapeseed Pollen: An Anode Material for Lithium-Ion Batteries. L. F. Chen†, S. X. Ma†, S. Lu, Y. Feng, J. Zhang, S. Xin, S. H. Yu*, Nano Res., 2017, 10 (1), 1-11 (Selected as Cover Paper)

18. Free standing three-dimensional nitrogen-doped carbon nanowire array for high-performance supercapacitors, G. Xu, H. Dou*, X. Geng, J. Han, L. F. Chen, H. Zhu*, Chem. Eng. J., 2017, 308 (15), 222-228

17. Macroscopic-Scale Three-Dimensional Carbon Nanofiber Architectures for Electrochemical Energy Storage Devices. L. F. Chen, Y. Feng, H. W. Liang, Z. Y. Wu, S. H. Yu*, Adv. Energy Mater., 2017, 7 (23), 1700826

16. Designed Formation of Hollow Particle-Based Nitrogen-Doped Carbon Nanofibers for High-Performance Supercapacitors. L. F. Chen, Y. Lu, L. Yu, X. W. Lou*, Energy Environ. Sci., 2017,10 (34), 1777-1783 (Selected as Cover Paper)

15. Metal-Like Fluorine-Doped beta-FeOOH Nanorods Grown on Carbon Cloth for Scalable High-Performance Supercapacitors. L. F. Chen†, Z. Y. Yu†, J. J. Wang†, Q. X. Li, Z. Q. Tan, Y. W. Zhu, S. H. Yu*, Nano Energy, 2015, 11, 119-128

14. Bacterial cellulose: A robust platform for design of three dimensional carbon-based functional nanomaterials, Z. Y. Wu, H. W. Liang, L. F. Chen, B. C. Hu, S. H. Yu*, Acc. Chem. Res., 2015, 49 (1), 96-105

13. Bacterial cellulose derived nitrogen-doped carbon nanofiber aerogel: An efficient metal-free oxygen reduction electrocatalyst for zinc-air battery H. W. Liang†, Z. Y. Wu†, L. F. Chen, C. Li, S. H. Yu*, Nano Energy, 2015, 11, 366-376

12. Iron carbide nanoparticles encapsulated in mesoporous Fe‐N‐doped carbon nanofibers for efficient electrocatalysis, Z. Y. Wu, X. X. Xu, B. C. Hu, H. W. Liang, Y. Lin, L. F. Chen, S. H. Yu*, Angew. Chem. Int. Ed., 2015, 54 (28), 8179-8183

11. Free-standing boron and oxygen co-doped carbon nanofiber films for large volumetric capacitance and high rate capability supercapacitors Z. Y. Yu, L. F. Chen, L. T. Song, Y. W. Zhu, H. X. Ji, S. H. Yu*, Nano Energy, 2015,15, 235-243

10. In Situ Hydrothermal Growth of Ferric Oxides on Carbon Cloth for Low-Cost and Scalable High-Energy-Density Supercapacitors. L. F. Chen, Z. Y. Yu, X. Ma, Z. Y. Li, S. H. Yu*, Nano Energy, 2014, 9, 345-354

9. Three-Dimensional Heteroatom-Doped Carbon Nanofiber Networks Derived from Bacterial Cellulose for Supercapacitors. L. F. Chen, Z. H. Huang, H. W. Liang, H. L. Gao, S. H. Yu*, Adv. Funct. Mater., 2014, 24 (32), 5104-5111

8. Growth of NiFe2O4 nanoparticles on carbon cloth for high performance flexible supercapacitors Z. Y. Yu, L. F. Chen, S. H. Yu*, J. Mater. Chem. A, 2014, 2 (28), 10889-10894

7. Bacterial-Cellulose-Derived Carbon Nanofiber@MnO2 and Nitrogen-Doped Carbon Nanofiber Electrode Materials: An Asymmetric Supercapacitor with High Energy and Power Density. L. F. Chen, Z. H. Huang, H. W. Liang, Q. F. Guan, S. H. Yu*, Adv. Mater., 2013, 25 (8), 4746-4752 (Selected as Cover Paper)

6. Flexible All-Solid-State High-Power Supercapacitor Fabricated with Nitrogen-Doped Carbon Nanofiber Electrode Material Derived from Bacterial Cellulose. L. F. Chen, Z. H. Huang, H. W. Liang, W. T. Yao, Z. Y. Yu, S. H. Yu*, Energy Environ. Sci., 2013, 6 (11), 3331-3338

5. Synthesis of Nitrogen-Doped Porous Carbon Nanofibers as an Efficient Electrode Material for Supercapacitors. L. F. Chen, X. D. Zhang, H. W. Liang, M. G. Kong, Q. F. Guan, P. Chen, S. H. Yu*, ACS Nano, 2012, 6 (8), 7092-7102

4. Macroscopic-scale template synthesis of robust carbonaceous nanofiber hydrogels and aerogels and their applications, HW Liang, QF Guan, LF Chen, Z Zhu, WJ Zhang, SH Yu*, Angew. Chem. Int. Ed., 2012, 51 (21), 5101-5105

3. Robust and highly efficient free-standing carbonaceous nanofiber membranes for water purification, H. W. Liang, X. Cao, W. J. Zhang, H. T. Lin, F. Zhou, L. F. Chen, S. H. Yu*, Adv. Funct. Mater., 2011, 21 (20), 3851-3858

2. Synthesis of an attapulgite clay@carbon nanocomposite adsorbent by a hydrothermal carbonization process and their application in the removal of toxic metal ions from water, L. F. Chen, H. W. Liang, Y. Lu, C. H. Cui, S. H. Yu*, Langmuir, 2011, 27 (14), 8998-9004

1. Carbonaceous nanofiber membranes for selective filtration and separation of nanoparticles, H. W. Liang, L. Wang, P. Y. Chen, H. T. Lin, L. F. Chen, D. He, S. H. Yu*, Adv. Mater., 2010, 22 (42), 4691-4695