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金属氮化物富勒烯的研究现状

The Current State of Metal Nitride Endohedral Fullerenes
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摘要 内嵌金属氮化物簇富勒烯的发现极大地扩展了内嵌富勒烯家族。内嵌金属氮化物富勒烯是一类将含有金属原子的氮化物(Mx-N,AxM3-x-N)包裹在富勒烯碳笼中的化合物,因其具有独特的分子结构和性质而受到人们广泛的研究和关注。阐述了合成金属氮化物富勒烯的方法,着重介绍了电弧法,探讨了氮源对电弧法合成金属氮化物富勒烯产量的影响,介绍了金属氮化物富勒烯常用的分离提纯方法,最后讨论了金属氮化物富勒烯的结构特点、性质和潜在应用。 The family of endohedral fullerenes was significantly expanded by the discovery of endohedral metal nitride cluster fullerenes. Metal nitride endohedral fullerenes is a special family of endohedral fullerenes which encage metal nitride in the carbon cage. Among the fullerenes the metal nitride endohedral fullerenes have attracted much attention because of their special molecular structure and properties. The synthesis methods on metal nitride cluster fullerenes especially the arc-discharge method are presented. The effect of nitrogen source of the yield on metal nitride cluster fullerenes is discussed based on this method. The most common separation and purification methods for the metal nitride endohedral fullerenes reported up to date are introduced. Finally the characteristic of structure, proper- ties and the potential applications of metal nitride cluster fullerenes are focused on.
出处 《材料导报》 EI CAS CSCD 北大核心 2011年第3期75-78,共4页 Materials Reports
基金 安徽省高等学校优秀青年人才基金(2010SQRL156) 江苏省无机及其复合新材料重点实验室开放基金(Wjjqfhxcl200703)
关键词 内嵌富勒烯 氮化物簇 合成方法 性质 endohedral fullerenes, nitride cluster, synthesis methods, property
作者简介 卫涛:男,1987年生,硕士研究生 田长安:通讯作者E-mail:tianchangan@tom.com
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参考文献26

  • 1Dunsch L, Yang S F. The recent state of endohedral fullerene research [J]. Electrochem Soc Interface, 2006, 15 (2):34.
  • 2Stevenson S, Rice G, Glass T, et al. Small-bandgap endohedral metallofullerenes in high yield and purity [J]. Nature, 1999,402(6764) : 898.
  • 3Johson R D, Devries M S, Salem J R, et al. Electron para magnetic resonance studies of lanthanum containing C82 [J]. Nature, 1992,355 : 239.
  • 4Dunsch L, Krause M, Noack J, et al. Endohedral nitride cluster fullerenes: Formation and spectroscopic analysis of L3-xMxN@C2n(0≤x≤3; n=39,40) [J]. J Phys Chem Solids, 2004,65 (2-3):309.
  • 5Stevenson S, Thompson M C, Coumbe H L, et al. Chemi cally adjusting plasma temperature, energy, and reactivity (CAPTEAR) method using NO, and combustion for selective synthesis of Sca N @ C40 metallofullerenes [J].J Am Chem Soc, 2007,129(51) : 16257.
  • 6Yang S F, Dunsch L. A large family of dysprosium-based trimetallic nitride endohedral fullerenes: Dya N @ G2n [J ]. J Phys Chem B, 2005,109 : 12320.
  • 7Stevenson S,Dom H C, Burbark P, et al. Automated HPLC separation of endohedral metafullerene Sc@O2n and Y@C2n fractions [J]. Anal Chem, 1994,66 : 2675.
  • 8Yang S F, Popov A, Kalbac M, et al. The isomers of gadolinium scandium nitride clusterfullerenes GdxSc3-x N@ C80 (x=1, 2) and their influence on cluster structure [J]. Chem Eur J, 2008,14 (7) : 2084.
  • 9Wang C R, Kai T, et al. Materials science: C66 fullerene encaging a scandium dimmer [J]. Nature,2000,408 : 426.
  • 10Krause M, Wong J, Dunsch L. Expanding the world of endohedral fullerenes The Ta N @ C2n ( 39 ≤ n ≤ 43 ) clusterfullerene family[J]. Chem Eur J, 2005,11 : 706.

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