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Shool of chemistry & materials Science, Heilongjiang University, Harbin, PR China, 150080


代表性成果
    近五年作为通讯作者,共发表了研究论文170余篇,其中被SCI收录150余篇,主要发表在国际著名的“Chem. Commun.(IF:5.141)”4篇、“J. Comput. Chem.(IF:4.297)”3篇、J. Phys. Chem. B (IF: 4.086)”4篇、“J. Phys. Chem. C”6篇、“Appl. Catal. B (IF: 4.651)”1篇、“Inorg. Chem. (IF: 4.123)”4篇、 “Nanotech. (IF: 3.31)” 8篇等期刊上,影响因子在3.0以上的论文有30余篇,其中影响因子在5.0以上4篇,4.0-5.0之间的论文有14篇,3.0-4.0 之间的论文有16篇,2.0-3.0 之间的论文有16篇。成果被SCI收录期刊正面他引1100余次。出版专著两部,最近应美国科学出版社邀请为纳米科学技术大百科全书撰写了完整的一章。申请发明专利14项。目前有十余篇重要论文已投稿,正在审理和修改当中。已发表和已录用的主要论文清单如下(以下均为SCI期刊收录论文,*代表通讯联系人)
文章列表
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  • 2010年文章列表
  • Feng SS, Ren ZY, Wei YL, Jiang BJ, Liu Y, Zhang LY, Zhang WB, Fu HG*,Synthesis and Application of Hollow Magnetic Graphitic Carbon Microspheres with/without TiO2 Nanoparticle Layer on the Surface. Chemical Communication 2010, 46, 6276–6278.
  • Jiang BJ, Tian CG, Fu HG*, et al. Facile Fabrication of High Quality Graphene from Expandable Graphite: Simultaneous Exfoliation and Reduction. Chemical Communication. 2010,46(27),4920-4922 (SCI, IF: 5.34)
  • Liu Y, Ren ZY, Fu HG*, et al. Synthesis and applications of graphite carbon sphere with uniformly distributed magnetic Fe3O4 nanoparticles (MGCSs) and MGCS@Ag, MGCS@TiO2. Journal of Material Chemistry 2010,20(23), 4802-4808 (SCI, IF= 4.646)
  • Cai ZC, Tian CG, Fu HG*, et al. One-pot synthesis of silver particle aggregation as highly active SERS substrate. Journal of Raman Spectroscopy 2010, doi 10.1002/jrs.2640. (SCI, IF= 3.526)
  • Wang L, Tian CG, Fu HG*, et al. Mass production of graphene via an in situ self-generating template route and its promoted activity as electrocatalytic support for methanol electroxidization. Journal of Physical Chemistry C 2010, 114(19),8727-8733 (SCI, IF=3.396)
  • Qu Y, Zhou W, Fu HG*, et al. Hierarchical anatase TiO2 porous nanopillars with high crystallinity and controlled length: An effective candidate for dye-sensitized solar-cells. Physical Chemistry Chemical Physics 2010,12(32): 9205-9212
  • Wang BL, Tian CG, Fu HG, et al. Chitosan: a green carbon source for the synthesis of graphitic nanocarbon, tungsten carbide and graphitic nanocarbon/tungsten carbide composites. Nanotechnology 21 (2010) 025606 (9pp). (SCI, IF:3.446)
  • Li YJ, LV RJ, Fu HG*, et al. Fabrication and evaluation of chiral monolithic column modified by β-cyclodextrin derivatives. Talanta 80 (2010) 1378–1382 (SCI , IF: 3.206)
  • 2009年文章列表
  • Zhou W, Pan K, Fu HG*, et al. The sandwich structure electrodes based on wire-likeTiO2–β-cyclodextrin–SWCNT composite for dye-sensitized solar cells. Journal of Photochemistry and Photobiology A: Chemistry 2009, 207, 306–310.
  • Tian XQ, Wan LJ, Fu HG*, et al. Facile synthesis of mesoporous ZnAl2O4 thin films through the evaporation-induced self-assembly method. Journal of Alloys and Compounds 2009, 488, 320–324.
  • Wang RH, Tian CG, Fu HG*, et al. In situ simultaneous synthesis of WC/graphitic carbon nanocomposite as a highly efficient catalyst support for DMFCw. Chemical Communication 2009, 3104-3106. (SCI, IF: 5.34)
  • Pan QJ, Fu HG*, Zhang HX*, et al. Theoretical Studies on Metal−Metal Interaction, Excited States, and Spectroscopic Properties of Binuclear Au−Au, Au−Rh, and Rh−Rh Complexes with Diphosphine Ligands: Buildup of Complexity from Monomers to Dimers. Inorganic Chemistry, 2009, 48, 2844–2854. (SCI, IF: 4.147)
  • Zhou W, Pan K, Fu HG*, et al. Solar-induced Self-assembly of TiO2-β-cyclodextrin-MWCNT Composite Wires. Physical Chemistry Chemical Physics 2009, 11, 1713-1718. (SCI, IF: 4.064)
  • Kang CH, Jing LQ*, Fu HG*, et al. Mesoporous SiO2-Modified Nanocrystalline TiO2 with High Anatase Thermal Stability and Large Surface Area as Efficient Photocatalyst. Journal of Physical Chemistry C 2009, 113, 1006–1013. (SCI, IF: 3.396)
  • Wang BL, Tian CG, Fu HG*, et al. A simple and large-scale strategy for the preparation of Ag nanoparticles supported on resin-derived carbon and their antibacterial properties. Nanotechnology 2009, 20, 025603(7pp) (SCI, IF:3.446)
  • Tian GH, Fu HG*, Jing LQ, et al. Synthesis and photocatalytic activity of stable nanocrystalline TiO2 with high crystallinity and large surface area. Journal of Hazardous Materials 2009, 161, 1122-1130. (SCI, IF: 2.975)

 

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