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贾希来
2023-05-06 11:07
  • 贾希来
  • 贾希来 - 副教授-北京科技大学-材料科学与工程学院-个人资料

近期热点

资料介绍

个人简历


2004年9月-2008年7月,中国石油大学(华东),化学工程与技术,学士 2008年9月-2013年7月,清华大学, 化学工程与技术,博士 2010年12月-2012年10月,加州大学洛杉矶分校,化学工程,联合培养博士

研究领域


1)碳纳米管、石墨烯等纳米碳材料的制备和分散技术;2)碳纳米管、石墨烯、多孔纳米碳改性高分子复合材料,用于增强、导热、抗静电、屏蔽等应用;3)高效电化学储能和电催化转化材料。

近期论文


[1] X. Jia, F. Wei, Advances in Production and Applications of Carbon Nanotubes, Top. Curr. Chem., 375 (2017) 18. [2] X. Jia, J. Wang, X. Zhu, T. Wang, F. Yang, W. Dong, G. Wang, H. Yang, F. Wei, Synthesis of lightweight and flexible composite aerogel of mesoporous iron oxide threaded by carbon nanotubes for microwave absorption, J. Alloys Compd., 697 (2017) 138-146. [3] X. Jia, Y. Lu, F. Wei, Confined growth of Li4Ti5O12 nanoparticles in nitrogen-doped mesoporous graphene fibers for high-performance lithium-ion battery anodes, Nano Research, 9 (2016) 230-239. [4] X. Jia, X. Zhu, Y. Cheng, Z. Chen, G. Ning, Y. Lu, F. Wei, Aerosol-Assisted Heteroassembly of Oxide Nanocrystals and Carbon Nanotubes into 3D Mesoporous Composites for High-Rate Electrochemical Energy Storage, Small, 11 (2015) 3135-3142. [5] X. Jia, G. Zhang, T. Wang, X. Zhu, F. Yang, Y. Li, Y. Lu, F. Wei, Monolithic nitrogen-doped graphene frameworks as ultrahigh-rate anodes for lithium ion batteries, Journal of Materials Chemistry A, 3 (2015) 15738-15744. [6] X. Jia, Y. Kan, X. Zhu, G. Ning, Y. Lu, F. Wei, Building flexible Li 4 Ti 5 O 12/CNT lithium-ion battery anodes with superior rate performance and ultralong cycling stability, Nano Energy, 10 (2014) 344-352. [7] X. Jia, Y. Cheng, Y. Lu, F. Wei, Building Robust Carbon Nanotube-Interweaved-Nanocrystal Architecture for High-Performance Anode Materials, ACS nano, 8 (2014) 9265-9273. [8] X. Jia, R. Wang, Z. Chen, H. Yu, F. Wei, Y. Lu, Building ultrastable carbon nanotube/vanadium oxide electrodes via a crosslinking strategy, Electrochem. Commun., 46 (2014) 52-55. [9] X. Jia, L. Zhang, R. Zhang, Y. Lu, F. Wei, Carbon nanotube-penetrated mesoporous V 2 O 5 microspheres as high-performance cathode materials for lithium-ion batteries, RSC Advances, 4 (2014) 21018-21022. [10] X. Jia, Z. Chen, A. Suwarnasarn, L. Rice, X. Wang, H. Sohn, Q. Zhang, B.M. Wu, F. Wei, Y. Lu, High-performance flexible lithium-ion electrodes based on robust network architecture, Energy & Environmental Science, 5 (2012) 6845-6849. [11] X. Jia, Q. Zhang, M.-Q. Zhao, G.-H. Xu, J.-Q. Huang, W. Qian, Y. Lu, F. Wei, Dramatic enhancements in toughness of polyimide nanocomposite via long-CNT-induced long-range creep, J. Mater. Chem., 22 (2012) 7050-7056. [12] X. Jia, Q. Zhang, J.-Q. Huang, C. Zheng, W.-Z. Qian, F. Wei, The direct dispersion of granular agglomerated carbon nanotubes in bismaleimide by high pressure homogenization for the production of strong composites, Powder Technol., 217 (2012) 477-481. [13] X. Jia, Z. Chen, X. Cui, Y. Peng, X. Wang, G. Wang, F. Wei, Y. Lu, Building robust architectures of carbon and metal oxide nanocrystals toward high-performance anodes for lithium-ion batteries, ACS nano, 6 (2012) 9911-9919. [14] X. Jia, C. Yan, Z. Chen, R. Wang, Q. Zhang, L. Guo, F. Wei, Y. Lu, Direct growth of flexible LiMn 2 O 4/CNT lithium-ion cathodes, Chem. Commun., 47 (2011) 9669-9671.

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