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个人简介

教育经历 英国剑桥大学 材料科学系 博士学位 (2002) 清华大学 材料科学与工程系 学士学位 (1996) 工作经历 清华大学 物理系 研究员 (2014-) 清华大学 物理系 副研究员 (2007-2014) 美国路易斯安那州立大学 机械工程系 助理教授 (2005-2007) 美国约翰霍普金斯大学 材料科学与工程系 博士后 (2002-2005)

研究领域

功能化纳米复合材料与器件的构筑和性能以及在能源、电子和传感等领域的应用。研究领域主要包括碳纳米管高分子复合材料研究和将碳纳米管应用于储能领域如锂离子电池、锂硫电池、超级电容器等的研究。

近期论文

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Y. F. Luo, Z. H. Fang, S. R. Duan, H. C. Wu, H. T. Liu, Y. X. Zhao ,K. Wang, Q. Q. Li, S. S. Fan, Z. J. Zheng, W. H. Duan, Y. G. Zhang and J. P. Wang,"Direct Monitoring of Li2S2 Evolution and Its Influence on the Reversible Capacities of Lithium-Sulfur Batteries", Angew. Chem. Int. Ed., e2022158025802(1 of 9), (2023) Z. H. Fang, S. R. Duan, H. T.Liu, Z. X. Hong, H. C. Wu, F. Zhao, Q. Q. Li, S. S. Fan, W. H. Duan, and J. P. Wang,"Lithium Storage Mechanism and Application of Micron-Sized Lattice-Reversible Binary Intermetallic Compounds as High-Performance Flexible Lithium-Ion Battery Anodes"Small,18,12,2105172,(2022). Z. H. Fang, Z. X. Hong, Y. F. Luo, Y. Liu, H. C. Wu, H. Tian, F. Zhao, Y. G. Zhang, Q. Q. Li, S. S. Fan and J. P. Wang,"Systematic study and effective improvement of voltammetry for accurate electrochemical window measurement of solid electrolytes",Electrochimica Acta,Volume 414, 140210,10 May (2022) Z. X. Hong, Z. H. Fang, Y. F. Luo, H. C. Wu, H. Tian, F. Zhao, Q. Q. Li, S. S. Fana & J. P. Wang,"Promising nano-silicon anodes prepared using the “disperse-anchor” strategy and functional carbon nanotube interlayers for flexible lithium-ion batteries",J. Mater. Chem. A, 23509–23520, 10, (2022) Z. H. Fang, Y. F. Luo, H. T. Liu, Z. X. Hong, H. C. Wu, F. Zhao, P. Liu, Q. Q. Li, S. S. Fan, W. H. Duan and J. P. Wang,"Boosting the Oxidative Potential of Polyethylene Glycol-Based Polymer Electrolyte to 4.36 V by Spatially Restricting Hydroxyl Groups for High-Voltage Flexible Lithium-Ion Battery Applications" Advanced Science,8,16,2100736,(2021). J. Wang, Z. Shi, Y. F. Luo, D. T. Wang, H. C. Wu, Q. Q. Li, S. S. Fan, J. Li, and J. P. Wang,"Efficient polysulfide trapping in lithium–sulfur batteries using ultrathin and flexible BaTiO3/graphene oxide/carbon nanotube layers Check for updates" Nanoscale,13,14,6863-6870,(2021). J. Wang, H. W. Liu, H. C. Wu, Q. Q. Li, Y. G. Zhang, S. S. Fan, and J. P. Wang, " Self-standing carbon nanotube aerogels with amorphous carbon coating as stable host for lithium anodes" Carbon,177,181-188, (2021). Z. H. Fang, Y. F. Luo, H. C. Wu, L.J. Yan, F. Zhao, Q. Q. Li, S. S. Fan, and J. P. Wang,"Mesoporous carbon nanotube aerogel-sulfur cathodes: A strategy to achieve ultrahigh areal capacity for lithium-sulfur batteries via capillary action" Carbon, 166, 183-192, (2020) Z. H. Fang, J. Wang, H. C. Wu, Q. Q. Li, S. S. Fan, and J. P. Wang, "Progress and challenges of flexible lithium ion batteries" Journal of Power Sources, 454, 227932, (2020). Y. Yu, Z. H. Fang, Y. F. Luo, H. C. Wu, Q. Q. Li, S. S. Fan, and J. P. Wang, "Ultra-stretchable supercapacitors based on biaxially pre-strained super-aligned carbon nanotube films" Nanoscale, 12, 24259-24265, (2020). Y. F. Luo, K. Wang, Q. Q. Li, S. S. Fan, and J. P. Wang*,"Macroscopic Carbon Nanotube Structures for Lithium Batteries" Small, 16(15):1902719, (2019). X. Y. Xiao, M. Chen, J. Zhang, T. F. Zhang, L. H. Zhang, Y. H. Jin, J. P. Wang, K. L. Jiang, S. S. Fan, and Q. Q. Li*, "Sub-10 nm Monolayer MoS2 Transistors Using Single-Walled Carbon Nanotubes as an Evaporating Mask." ACS Appl. Mater. Interfaces, 11, 12, 11612–11617, (2019). Z. Z.Huang, T. F. Zhang, Junku Liu, L. H. Zhang, Y. H. Jin, J. P. Wang, K. L. Jiang, S. S. Fan, and Q. Q. Li*, "Amorphous MoS2 Photodetector with Ultra-Broadband Response" ACS Applied Electronic Materials, 1(7),June(2019). Y. C. Wang, Y. J. Jin, X. Y. Xiao, T. F. Zhang, H. T. Yang, Y. D. Zhao, J. P. Wang, K. L. Jiang, S. S. Fan and Q. Q. Li, "Flexible, transparent and highly sensitive SERS substrates with cross-nanoporous structures for fast on-site detection", Nanoscale, 10, 15195-15204, (2018). Y. Yu, Y. F. Luo, H.C. Wu, K. L. Jiang, Q. Q. Li, L. Zhang, S. S. Fan, J. Li, and J. P. Wang*, Ultrastretchable carbon nanotube composite electrodes for flexible lithium-ion batteries. Nanoscale, 10(42): p. 19972-19978, (2018). Y. F. Luo, H.C. Wu, L. Liu, Q. Q. Li, K. L. Jiang, S. S. Fan, J. Li, and J. P. Wang*, TiO2-Nanocoated Black Phosphorus Electrodes with Improved Electrochemical Performance. ACS Appl Mater Interfaces, 10(42): p. 36058-36066, (2018) W. B. Kong, D. T. Wang, L. J. Yan, Y. F. Luo, K. L. Jiang, Q. Q. Li, L. Zhang, S. G. Lu, S. S. Fan, J. Li, and J. P. Wang*, "Ultrathin HfO2-modified carbon nanotube films as efficient polysulfide barriers for Li-S batteries", Carbon, 139, 896-905, (2018). D. T. Wang, K. Wang, L. Sun, H. C. Wu, J. Wang, Y. X. Zhao, L. J. Yan, Y. F. Luo, K. L. Jiang, Q. Q. Li, S. S. Fan, J. Li, and J. P. Wang*, "MnO2 nanoparticles anchored on carbon nanotubes with hybrid supercapacitor-battery behavior for ultrafast lithium storage", Carbon, 139, 145-155, (2018). Y. F. Luo, K. Wang, S. Luo, F. Zhao, H. C. Wu, K. L. Jiang, Q. Q. Li, S. S. Fan, and J. P. Wang*, "Three-dimensional carbon nanotube/transition-metal oxide sponges as composite electrodes with enhanced electrochemical performance", ACS Appl. Nano Mater., 1, 2997-3005, (2018). L. J. Yan, N. N. Luo, W. B. Kong, S. Luo, H. C. Wu, K. L. Jiang, Q. Q. Li, S. S. Fan, W. H. Duan*, and J. P. Wang*, "Enhanced performance of lithium-sulfur batteries with an ultrathin and lightweight MoS2/carbon nanotube interlayer", J. Power Sources, 389, 169-177, (2018). D. T. Wang, K. Wang, H. C. Wu, Y. F. Luo, L. Sun, Y. X. Zhao, J. Wang, L. J. Jia, K. L. Jiang, Q. Q. Li, S. S. Fan, and J. P. Wang*, "CO2 oxidation of carbon nanotubes for lithium-sulfur batteries with improved electrochemical performance", Carbon, 132, 370-379, (2018). Y. F. Luo, N. N. Luo, W. B. Kong, H. C. Wu, K. Wang, S. S. Fan, W. H. Duan*, and J. P. Wang*, "Multifunctional interlayer based on molybdenum diphosphide catalyst and carbon nanotube film for lithium-sulfur batteries", Small, 14, 1702853, (2018). K. L. Zhu, Y. F. Luo, F. Zhao, J. W. Hou, X. W. Wang, H. Ma, H. Wu, Y. G. Zhang, K. L. Jiang, S. S. Fan, J. P. Wang*, K. Liu*, "Free-Standing, binder-free titania/super-aligned carbon nanotube anodes for flexible and fast-charging li-ion batteries", ACS Sustainable Chem. Eng., 6, 3426-3433, (2018). J. T. Wang, X. Jin, Z. B. Liu, G. Yu, Q. Q. Ji, H. M. Wei, J. Zhang, K. Zhang, D. Q. Li, Z. Yuan, J. C. Li, P. Liu, Y. Wu, Y. Wei, J. P. Wang, Q. Q. Li, L. N. Zhang, J. Kong, S. S. Fan, and K. L. Jiang, "Growing highly pure semiconducting carbon nanotubes by electrotwisting the helicity", Nature Catalysis, 1, 326-331, (2018). W. Ning, Z. H. Wang, P. Liu, D. L. Zhou, S. Y. Yang, J. P. Wang, Q. Q. Li, S. S. Fan, K. L. Jiang, "Multifunctional super-aligned carbon nanotube/polyimide composite film heaters and actuators", Carbon, 139, 1136-1143, (2018).

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