学术及科研成果 |
代表性论文: [1] Lu Y.Y., Zhang Y, Yan H.L.*, Chu P.K., Cheng J.B., et. al. Integration of Ti3C2/TiO2 and spinel high-entropy oxide: A novel strategy for enhancing lithium-ion battery performance, Chemical Engineering Journal, 2025, 519:165230. (JCR一区收录) [2] Luo X.K., Wang D., Liu S.Y., Yan H.L.*, Cheng J.B., et. al. CoSe QDs/Sn3O4 PCNFs with high catalytic conversion kinetics towards high-efficiency Li-S batteries, Journal of Colloid and Interface Science, 2025, 682:884. (JCR一区收录) [3] Wang D., Dong Z.H., Yan H.L., Lu X.Y., Shi C.L., et. al. Enhancing Bidirectional Lithium–Sulfur Battery Performance Through Synergistic-Induced 3D Li2S Deposition, Advanced Energy Materials, 2025, 15, e04046. (JCR一区收录) [4] Wang D., Yang Y., Liu S.Y., Yan H.L.*, Cheng J.B.*, et. al. CoSe QDs/NiO PCNFs with built-in electric fields accelerates polysulfide conversion in lithium-sulfur batteries, Materials Today Chemistry, 2025, 45:102650. (JCR一区收录) [5] Liu S.Y., Wang D.,Yang Y., Yan H.L.*, Cheng J.B., et. al. One-dimensional confined ZnS@NiO p-n junctions significantly enhancing polysulfides redox kinetics, Journal of Alloys and Compounds, 2025, 1040:183672. (JCR一区收录) [6] Yan H.L., Wang D., Tang Y., Cheng J.B.*, Lu Y., et. al. Synergistic effect of adsorption and electrocatalysis of ZnO@MnO2 PCNFs for high-performance lithium-sulfur batteries, Applied Surface Science, 2024, 677:161045. (JCR一区收录) [7] Wang D., Yan H.L.*, Yang Y., Cheng J.B., Lu Y., et. al. Promoting polysulfide bidirectional conversion by one-dimensional p-n junctions for Li-S batteries, Science China Materials, 2024, 67(1):93-106. (JCR一区收录) [8] Cheng J.B., Lu X.H., Zhang, D.Y., Yan H.L.*, Liu Congbin, et. al. N-Doped Hollow Multichannel Carbon Nanofibers Encased in Fe3C for Lithium-Ion Storage,Supercapacitor Electrodes, ACS Applied Nano Materials, 2024, 7(9):10543-10551. (JCR二区收录)
其他成果(指导学生获奖等): 2012年获湖南省优秀博士学位论文奖(省级奖)。 2021年入围河南省高层次人才“C类人才”。 |