人物經歷
2007.9-2011.6,周口師範大學,化學,學士;
2011.9-2016.6,吉林大學,無機化學,博士;
2018.12-2020.2,日本高知大學,材料學,博士後;
2016年-至今,陝西科技大學,材料學院,材料化學系。
研究方向
(1)新型高效光催化材料的設計合成及其在太陽能轉換和環境淨化方面的套用;
(2)電催化材料的結構設計與功效。
主要成就
研究項目
主持國家自然科學基金青年項目、陝西省自然科學基金青年項目以及陝西科技大學博士科研啟動基金項目等
研究成果
1.L. Feng, G. Y, Y. Wu, G.-D. Li, H. Li, Y. Sun, T. Asefa*, W. Chen* and X. Zou*,“High-index faceted Ni3S2 nanosheet arrays as highly active and ultrastable electrocatalysts for water splitting”, J. Am. Chem. Soc., 2015, 137, 14023-14026; (SCI, IF = 14.695,Highly Cited Papers: 865,正封面)
2.L. Feng, G.-D Li, Y. Liu, Y. Wu, H. Chen, Y. Wang, Y.-C Zou, D. Wang and X. Zou*,“Carbon-armored Co9S8 nanoparticles as all-pH efficient and durable H2-evolving electrocatalysts”, ACS Appl. Mater. Interfaces, 2015, 7, 980-988; (SCI, IF = 8.456,Highly Cited Papers: 202)
3.L. Feng, M. Fan, Y. Wu, Y. Liu, G.-D. Li, W. Chen, H. Chen and X. Zou*,“Metallic Co9S8 nanosheets grown on carbon cloth as efficient binder-free electrocatalysts for hydrogen evolution reaction under neutral media”, J. Mater. Chem. A, 2016, 4, 6860-6867; (SCI, IF = 10.733)
4.L. Feng, X. Zou*, J. Zhao, L.-J. Zhou, D. J. Wang, X. Zhang and G.-D. Li*,“Nanoporous Sr-rich strontium titanate: a stable and superior photocatalyst for H2 evolution”, Chem. Commun., 2013, 49, 9788-9790; (SCI, IF = 6.164)
5.L. Feng, Y.-C. Zou, C. Li, S. Gao, L.-J Zhou, Q. Sun, M. Fan, H. Wang, D. Wang, G.-D. Li* and X. Zou*,“Nanoporous sulfur-doped graphitic carbon nitride microrods: A durable catalyst for visible-light-driven H2 evolution”, Int. J. Hydrogen. Energy, 2014, 39, 15373-15379; (SCI, IF = 4.084)
6.L. Feng,* Y. Du, J. Huang,* L. Cao, L. Feng, Y. Feng, Q. Liu, D. Yang and K. Kajiyoshi*,“Nanoporous NiAl-LDH nanosheet arrays with optimized Ni active sites for efficient electrocatalytic alkaline water splitting”, Sustainable Energy Fuels, 2020, DOI: 10.1039/D0SE00050G. (SCI, IF = 4.912)
7.L. Cao, N. Zhang, L. Feng*, J. Huang*, Y. Feng, W. Li, D. Yang and Q. Liu,“Well-dispersed ultrasmall VC nanoparticles embedded in N-doped carbon nanotubes as highly efficient electrocatalysts for hydrogen evolution reaction”, Nanoscale, 2018, 10, 14272-14279; (SCI, IF = 6.97)
8.W. Li, J. Huang*, L. Feng*, L. Cao, Y. Liu and L. Pan,“Nano-grain dependent 3D hierarchical VS2 microrods with enhanced intercalation kinetic for sodium storage properties”, J. Power Sources, 2018, 398, 91-98; (SCI, IF = 7.467)
9.N. Zhang, L. Cao, L. Feng*, J. Huang, K. Kajiyoshi, C. Li, Q. Liu, D. Yang and J. He,“Co,N-Codoped porous vanadium nitride nanoplates as superior bifunctional electrocatalysts for hydrogen evolution and oxygen reduction reactions”, Nanoscale, 2019, 11, 11542-11549; (SCI, IF = 6.97)
10.D. Yang, L. Cao, L. Feng*, J. Huang, K. Kajiyoshi, Y. Feng, Q. Liu, W. Li, L. Feng, G. Hai,“Formation of hierarchical Ni3S2 nanohorn arrays driven by in-situ generation of VS4 nanocrystals for boosting alkaline water splitting”, Appl. Catal. B: Environ., 2019, 257, 117911. (SCI, IF = 14.229)
11.Q. Liu, J. Huang*, Y. Zhao, L. Cao, K. Li, N. Zhang, D. Yang, L. Feng, L. Feng*,“Tuning the coupling interface of ultrathin Ni3S2@NiV-LDH heterogeneous nanosheet electrocatalysts for improved overall water splitting”, Nanoscale, 2019, 11, 8855-8863; (SCI, IF = 6.97)
12.D. He, L. Cao∗, J.Huang, K. ajiyoshi, J. Wu, C. Wang, Q. Liu, D. Yang, L. Feng*,“In-situ optimizing the valence configuration of vanadium sites in NiV-LDH nanosheet arrays for enhanced hydrogen evolution reaction”, J. Energy Chem., 2020, 47, 263-271. (SCI, IF = 5.162)
13.Q. Liu, J. Huang,* L. Cao, K. Kajiyoshi, K. Li, Y. Feng, C. Fu, L. Kou, L. Feng* ,“V‑doping triggered formation and structural evolution of dendritic Ni3S2@NiO core−shell nanoarrays for accelerating alkaline water splitting”, ACS Sustainable Chem. Eng., 2020, 8, 6222-6233. (SCI, IF = 6.97,第二封面)