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个人简介

魏湫龙副教授,工学博士,博士生导师,厦门大学“南强青年拔尖人才”,现任职于厦门大学材料学院。 教育经历 2011/09–2016/06,武汉理工大学, 材料科学与工程学院,工学博士,导师:张清杰 教授、麦立强 教授 2007/09–2011/06,武汉理工大学, 材料科学与工程学院,工学学士 工作经历 2019/10, 厦门大学材料学院,副教授 2016/08 – 2019/10, 加州大学洛杉矶分校,材料科学与工程系,博士后研究员,合作导师: Bruce Dunn教授

研究领域

1.快充锂离子电池材料 2.钠离子电池材料 3.超级电容器材料与机理 4.多尺度功能化纳米材料

近期论文

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K. Lan, L. Liu, J.-Y. Zhang, R. Wang, L. Zu, Z. Lv, Q. Wei*, and D. Zhao*, Precisely Designed Mesoscopic Titania for High-Volumetric-Density Pseudocapacitance, J. Am. Chem. Soc. 2021, 143, 35, 14097-14105. (影响因子15.419,封面论文) X. Chang, T. Huang, J. Yu, J. Li, J. Wang and Q. Wei*, Pseudocapacitive Anode Materials toward High-Power Sodium-Ion Capacitors. Batteries & Supercaps, 2021, https://doi.org/10.1002/batt.202100043. (影响因子7.093) Q. Wei*, Q. Li, Y. Jiang, Y. Zhao, S. Tan, J. Dong, L. Mai* and D.-L. Peng*, High-Energy and High-Power Pseudocapacitor-Battery Hybrid Sodium-Ion Capacitor with Na+ Intercalation Pseudocapacitance Anode. Nano-Micro Lett., 2021, 13, 55. (影响因子16.419) Y. Jiang, J. Dong, S. Tan, Q. Wei*, F. Xiong, W. Yang, Y. Shen, Q. Zhang, Z. Liu, Q. An and L. Mai*, Surface pseudocapacitance of mesoporous Mo3N2 nanowire anode toward reversible high-rate sodium-ion storage, J. Energy Chem. 2021, 55, 295. (影响因子9.676) M. Ding, C. Cheng, Q. Wei*, Y. Hu, Y. Yan, K. Dai, J. Mao, J. Guo, L. Zhang* and L. Mai*, Carbon Decorated Li3V2(PO4)3 for High-Rate Lithium-ion Batteries: Electrochemical Performance and Charge Compensation Mechanism, J. Energy Chem. 2021, 53, 124. (影响因子9.676) Q. Wei*, R.H., DeBlock, D.M. Butts, C. Choi, and B. Dunn*, Pseudocapacitive Vanadium‐based Materials toward High‐Rate Sodium‐Ion Storage. Energy Environ. Mater., 2020, 3, 221-234. (影响因子15.122) J. Dong, Y. He, Y. Jiang, S. Tan, Q. Wei*, F. Xiong, Z. Chu, Q. An and L. Mai*, Intercalation pseudocapacitance of FeVO4·nH2O nanowires anode for high-energy and high-power sodium-ion capacitor, Nano Energy, 2020, 73, 104838. (影响因子17.881) C. Choi, D. S. Ashby, D. M. Butts, R. H. DeBlock, Q. Wei, J. Lau, B. Dunn*, Achieving high energy density and high power density with pseudocapacitive materials, Nature Review Mater., 2020, 5, 5. (影响因子66.308) K. Lan#, Q. Wei#, R. Wang, Y. Xia, S. Tan, Y. Wang, A. Elzatahry, P. Feng, L. Mai*, D. Zhao*, Two-dimensional mesoporous heterostructure delivering superior pseudocapacitive sodium storage via bottom-up mono-micelle assembly, J. Am. Chem. Soc. 2019, 141, 42, 16755-16762 (影响因子15.419) Y. Jiang, Y. Shen, J. Dong, S. Tan, Q. Wei*, F. Xiong, Q. Li, X. Liao, Z. Liu, Q. An, and L. Mai*, Surface Pseudocapacitive Mechanism of Molybdenum Phosphide for High-Energy and High-Power Sodium-Ion Capacitors, Adv. Energy Mater. 2019, 9, 1900967 (影响因子29.368) J. Dong, Y. Jiang, Q. Wei*, S. Tan, Y. Xu, G. Zhang, X. Liao, W. Yang, Q. Li, Q. An, and L. Mai*, Strongly Coupled Pyridine-V2O5·nH2O Nanowires with Intercalation Pseudocapacitance and Stabilized Layer for High Energy Sodium Ion Capacitors, Small, 2019, 15, 1900379 (影响因子13.281) Q. Wei, Y. Jiang, X. Qian, L. Zhang, Q. Li, S. Tan, K. Zhao, W. Yang, Q. An, J. Guo and L. Mai*, Sodium ion capacitor using pseudocapacitive layered ferric vanadate nanosheets cathode, iScience, 2019, 6, 212-221 (影响因子5.458) S. Tan, Y. Jiang, Q. Wei*, Q. Huang, Y. Dai, F. Xiong, Q. Li, Q. An, X. Xu, Z. Zhu, X. Bai* and L. Mai*, Synergistic Effect of Multi-Dimensionally Assembled Nanoarchitectures Rendering High-Stable and Ultrafast Sodium-Ion Storage. Adv. Mater., 2018, 1707122. (影响因子30.849) Q. Wei, Q. Wang, Q. Li, Q. An*, Y. Zhao, Z. Peng, Y. Jiang, S. Tan, M. Yan and L. Mai*, Pseudocapacitive Layered Iron Vanadate Nanosheets Cathode for Ultrahigh-Rate Lithium Ion Storage. Nano Energy, 2018, 47, 294. (影响因子17.881). Q. Wei, F. Xiong, S. Tan, L. Huang, E. H. Lan, B. Dunn* and L. Mai*, Porous One-Dimensional Nanomaterials: Design, Fabrication and Applications in Electrochemical Energy Storage, Adv. Mater. 2017, 1602300. (内封论文, 影响因子30.849,ESI热点论文,ESI高被引论文,2017年Advanced Materials最热文章) Y. Dai, Q. Li, S. Tan, Q. Wei*, Y. Pan, X. Tian, K. Zhao, X. Xu, Q. An, L. Mai* and Q. Zhang, Novel Nanoribbons and Nanoscrolls Intertwined Three-Dimensional Vanadium Oxide Hydrogels for Enhanced Lithium Storage. Nano Energy, 2017, 40, 73. (影响因子17.881) Q. Li, Q. Li, K. A. Owusu, W. Luo, Q. An, Q. Wei*, Q. Zhang, and Liqiang Mai, Self-adaptive mesoporous CoS@alveolus-like carbon yolk-shell microsphere for alkali cations storage, Nano Energy, 2017, 41, 109. (影响因子17.881) Y. Xu#, Q. Wei#, C. Xu, Q. Li, Q. An*, P. Zhang, J. Sheng, L. Zhou and L. Mai*, Layer-by-Layer Na3V2(PO4)3@rGO Nanocomposite as Superior Rate and Ultralong-Life Sodium-Ion Battery Cathode, Adv. Energy Mater. 2016, 1600389. (ESI高被引论文,影响因子29.368) Q. Wei, S. Tan, X. Liu, M. Yan, F. Wang, Q. Li, Q. An, R. Sun, K. Zhao, H. Wu and L. Mai*, Novel Polygonal Vanadium Oxide Nanoscrolls as Stable Cathode for Lithium Storage, Adv. Funct. Mater. 2015, 25, 1773. (内封论文, 影响因子18.808) Q. Wei, J. Liu, W. Feng, J. Sheng, X. Tian, L. He, Q. An and L. Mai*, Hydrated Vanadium Pentoxide with Superior Sodium Storage Capacity, J. Mater. Chem. A, 2015, 3, 8070. (ESI高被引论文, 影响因子12.732) Q. Wei, Q. An, D. Chen, L. Mai*, S. Chen, Y. Zhao, K. M. Hercule, L. Xu, A. Minhas-Khan and Q. Zhang, One-pot Synthesized Bicontinuous Hierarchical Li3V2(PO4)3/C Mesoporous Nanowires for High-Rate and Ultralong-Life Lithium-ion Batteries. Nano Lett., 2014, 14, 1042. (ESI高被引论文, 影响因子11.189)

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