蔣建(西南大學材料與能源學部副教授)

蔣建,西南大學材料與能源學部副教授,碩士生導師,新加坡南洋理工大學博士後,主要從事電化學儲能方面的工作,成果曾發表於Nature Com.,Adv. Mater.,Energy Environ. Sci.等雜誌上。截至目前,以第一作者發表的SCI論文共12篇 (IF因子總和超過110), 參與發表的論文總計48篇,H-index達22,可檢索論文總引用次數超過2960(它引次數>2000;獲南洋理工大學專利批准一項。

研究方向,代表性學術論文,

研究方向

a) 氧化物/氫氧化物納米結構和低成本碳纖維材料的製備及儲能套用。
b) 低成本竹碳纖維材料的製備及其儲能機理研究。
c) 低成本、長壽命鋰硫電池電極材料的設計。

代表性學術論文

1 J. Jiang, J. P. Liu, X. T. Huang, X. W. Lou, etc. Recent Advances in Metal Oxide-based Electrode Architecture Design for Electrochemical Energy Storage, Advanced Materials, 2012, 24, 5166-5180. (Review Article)
2 J. Jiang, J. P. Liu, Yu Ting, et al. CNTs/Ni Hybrid Nanostructured Arrays: Synthesis and Application as High-Performance Electrode Materials for Pseudocapacitor, Energy & Environmental Science, 2011, 4, 5000-5007
3 J. Jiang, J. H. Zhu, W.Ai, Z. X. Fan, X.N. Shen, C. J. Zou, J. P. Liu, H. Zhang and T. Yu*, Evolution of Disposable Bamboo Chopsticks into Uniform Carbon Fibers: A Smart Strategy to Fabricate Sustainable Anodes for Li-ion Batteries, Energy & Environmental Science, 2014,7, 2670-2679
4 J. Jiang, J. H. Zhu, Y. M. Feng, J. P. Liu and X. T. Huang, A novel evolution strategy to fabricate 3D hierachical interconnected core-shell Ni/MnO2 hybrid for Li-ion batteries, Chemical Communications, 2012, 48, 7471-7473.
5 J. Jiang, J. P. Liu, X. T. Huang, etc. Building one-dimensional oxide nanostructure arrays on conductive metal substrates for lithium-ion battery anodes, Nanoscale, 2011, 3, 45-58. (Review Article)
12 J. Jiang, J. H. Zhu, W. Ai, C. J. Zou, Y. L. Wang, W. Huang, T. Yu, Individual Carbon Microtube Derived from Human Hair: A Feasible and Smart Building Block for Constructing Micro-supercapacitors, Advanced Electronic Materials, 2015, under review.
13 J. Jiang, J. H. Zhu, W. Ai, X. L. Wang, Y. L. Wang, H. Wei, T. Yu, Encapsulation of sulfur with thin-layered nickel-based hydroxides for long-cyclic lithium-sulfur cells, Nature Communications, 2015, Accept.
14 J. P. Liu, J. Jiang, C. W. Cheng, H. X. Li, H. J. Fan, etc., Co3O4 Nanowire@MnO2 Ultrathin Nanosheet Core/Shell Arrays: A New Class of High-Performance Pseudocapacitive Materials, Advanced Materials, 2011, 23, 2076–2081. (Selected as "Frontispiece Feature Paper"; Highlighted by "Nature Asia Materials" and "Nanowerk").

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