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无机分子纳米材料的研究进展 被引量:12

Recent Developments on Inorganic Molecular Nanomaterials
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摘要 无机分子纳米材料是至少在一个维度上为纳米尺寸的分子及以其为单元组成的材料。由于其特殊的结构和性质,这种材料可以作为未来纳米分子电子器件、小分子吸附及储存材料。本文将从合成、结构、性质、应用等方面,结合最新进展对这一充满活力并有着应用前景的领域作一简要概述。 Inorganic molecular nanomaterials are the materials composed of molecules of nanosize in at least one dimension. Due to their special structures and properties, the materials can be used as nanoelectronic devices, sensors, selective sorption, and so forth in the future. In this perspective, the recent progress in the preparation, structures, properties and applications of this prospective field have been briefly described.
出处 《无机化学学报》 SCIE CAS CSCD 北大核心 2005年第1期1-11,共11页 Chinese Journal of Inorganic Chemistry
基金 国家自然科学基金(No.20301010G2000077500) 南京大学人才基金及学科建设基金资助项目
关键词 纳米材料 无机 纳米分子 单元 小分子 应用前景 电子器件 性质 合成 吸附 inorganic molecular nanomaterials assembly structure new materials
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  • 1This transcript of the classic talk that Richard Feynman gave on December 29th 1959 at the annual meeting of the American Physical Society at the California Institute of Technology (Caltech) was first published in the February 1960 issue of Caltech's Engineering and Science.
  • 2YOU Xiao-Zeng(游效曾). Molecular-based Materials-Opto-electronic Functional Compounds(分子材料-光电功能配合物).Shanghai:Science Press,2001.
  • 3ZHANG Li-De(张立德),Mou Ji-Mei(牟季美).Nanomaterials and Nanostructures(纳米材料和纳米结构).Beijing:Science Press, 2001.
  • 4(a)Purath A, Koppe R, Schnockel H. Angew. Chem. Int. Ed.,1999,38:2926-2928(b)Schnepf A, Stosser G, Schnockel H. J. Am. Chem. Soc.,2000,122:9178-9181(c)Kohnlein H, Stosser G, Baum E, et al. Angew. Chem. Int.Ed., 2000,39:799-801(d)Schnepf A, Schnockel H. Angew. Chem. Int. Ed., 2001,40:712-715(e)Kohnlein H, Purath A, Klemp C, et al. Inorg. Chem., 2001,40:4830-4838(f)Schnepf A, Jee B, Schnockel H, et al. Inorg. Chem., 2003,42:7731-7733(g)Steiner J, Stosser G, Schnockel H. Angew. Chem. Int. Ed.,2004,43:302-305
  • 5Ecker A, Weckert E, Schnockel H. Nature, 1997,387:379-381
  • 6Schnepf A, Schnockel H. Angew. Chem. Int. Ed., 2002,41:3533-3552
  • 7Bakharev O N, Zelders N, Brom H B, et al. Eur. Phys. J.,2003,D24,101-104
  • 8Hagel J, Kelemen M T, Fischer G, et al. Low Temp. Phys.,2002,129:133-142
  • 9Fedorin V A. Semiconductors, 1993,27:354-357
  • 10(a)Mansour B A, Demian S E, Zayed H A. J. Mater. Sci.,1992,3:249-252(b)Vucic' Z, Milat O, Horvatic'V, et al. Phys. Rev.,1981,B24:5398-5401

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