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研究领域

1. 具有各向异性的导电聚合物纳米材料的制备; 2. 导电聚合物基复合催化剂材料的制备及在化学催化和电催化领域的应用研究; 3. 三维石墨烯/碳管复合多孔电极的制备及其在柔性储能与驱动器件中的应用研究; 4. 具有各向异性结构的全碳电极材料(包括碳棒和碳层阵列等)的制备及其在储能与驱动器件中的应用研究。

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

1. Lirong Kong, Wei Chen*, Ionic Liquid Directed Mesoporous Carbon Nanoflakes as an Effiencient Electrode material, Scientific Reports, 2015, 18236. 2. Lirong Kong, Wei Chen*, Ionic Liquid Directed Assembly of Wrinkled and Porous Composite Electrode for High-Power Flexible Supercapacitors, RSC Advances, 2014, 4, 65012-65020. 3. Lirong Kong, Wei Chen*, Carbon Nanotube/Graphene based Bio-inspired Electrochemical Actuator, Advanced Materials, 2014, 26, 1025-1043. 4. Lirong Kong, Xincai Liu, Xiujie Bian, Ce Wang*, Silica nanocubes with a hierarchically porous structure, RSC Advances, 2012, 2, 2887-2894. 5. Lirong Kong, Xiaofeng Lu, Xiujie Bian, Wanjin Zhang*, Ce Wang*, Constructing carbon-coated Fe3O4 microspheres as antiacid and magnetic support for palladium nanoparticles for catalytic applications, ACS Applied Materials and Interfaces, 2011, 3, 35-42. 6. Lirong Kong, Xiaofeng Lu, Xiujie Bian, Wanjin Zhang*, Ce Wang*, A one-pot synthetic approach to prepare palladium nanoparticles embedded hierarchically porous TiO2 hollow spheres for hydrogen peroxide sensing, Journal of Solid State Chemistry, 2010, 183, 2421-2425. 7. Lirong Kong, Xiaofeng Lu, Xiujie Bian, Wanjin Zhang*, Ce Wang*, Accurately tuning the dispersity and size of palladium particles on carbon spheres and using carbon spheres/palladium composite as support for polyaniline in H2O2 electrochemical sensing, Langmuir 2010, 26, 5985-5990. 8. Lirong Kong, Xiaofeng Lu, E. Jin, Shan Jiang, Ce Wang* and Wanjin Zhang*, Templated synthesis of polyaniline nanotubes with Pd nanoparticles attached onto their inner walls and its catalytic activity on the reduction of p-nitroanilinum, Composites Science and Technology, 2009, 69, 561-566. 9. Lirong Kong, Xiaofeng Lu, E Jin, Shan Jiang, Xiujie Bian, Wanjin Zhang*, Ce Wang*, Constructing magnetic polyaniline/metal hybrid nanostructures using polyaniline/Fe3O4 composite hollow spheres as supports, Journal of Solid State Chemistry, 2009, 182, 2081-2087. 10. Lirong Kong, Xiaofeng Lu, Wanjin Zhang*,Facile synthesis of multifunctional multiwalled carbon nanotubes/Fe3O4 nanoparticles/polyaniline composite nanotubes,Journal of Solid State Chemistry, 2008, 181, 628-636. (ranked in the top 3 most downloaded articles of the year) 11. Shan Jiang, Jingyu Chen, Jun Tang, E. Jin, Lirong Kong, Wanjin Zhang*, and Ce Wang*, Au nanoparticles-functionalized two-dimensional patterned conducting PANI nanobowl monolayer for gas sensor, Sensors and Actuators B: Chemical, 2009, 140, 520-524. 12. E Jin, Xiaofeng Lu, Xiujie Bian, Lirong Kong, Wanjin Zhang*, Ce Wang*, Unique tetragonal starlike polyaniline microstructure and its application in electrochemical biosensing, J. Mater. Chem. 2010, 20, 3079-3083. 13. E Jin, Xiujie Bian, Xiaofeng Lu, Lirong Kong, Ce Wang*, Wanjin Zhang*, Facile synthesis of polyaniline derivatives hollow microspheres with porous shells deposited on glass substrate, Materials Chemistry and Physics, 2010, 120, 336-340. 14. Xiujie Bian, Xiaofeng Lu, E. Jin, Lirong Kong, Wanjin Zhang* and Ce Wang*, Fabrication of Pt/polypyrrole hybrid hollow microspheres and their application in electrochemical biosensing towards hydrogen peroxide, Talanta, 2010, 81, 813-818. 15. Yanpeng Xue, Xiaofeng Lu, Yue Xu, Xiujie Bian, Lirong Kong and Ce Wang*, Controlled fabrication of polypyrrole capsules and nanotubes in the presence of Rhodamine B, Polymer Chemistry 2010,1, 1602-1605. 16. Ye Li, Zhiliang Li, Xiaofeng Lu, Chengcheng Zhang, Zhaojie Wang, Lirong Kong, Ce Wang*, Xincai Liu*, Composite membranes based on sulfonated poly(aryl ether ketone)s containing the hexafluoroisopropylidene diphenyl moiety and poly(amic acid) for proton exchange membrane fuel cell application, International Journal of Hydrogen Energy, 2011, 36, 14622–14631. 17. Xiujie Bian, Xiaofeng Lu, Yanpeng Xue, Chengcheng Zhang, Lirong Kong, Ce Wang*, A facile one-pot hydrothermal method to produce SnS2/reduced graphene oxide with flake-on-sheet structures and their application in the removal of dyes from aqueous solution, Journal of Colloid and Interface Science, 2013, 406, 37–43.

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