Pagona Georgia, Rotas Georgios, Khlobystov Andrei N, Chamberlain Thomas W, Porfyrakis Kyriakos, Tagmatarchis Nikos
Theoretical and Physical Chemistry Institute, National Hellenic Research Foundation, 11635 Athens, Greece.
J Am Chem Soc. 2008 May 14;130(19):6062-3. doi: 10.1021/ja800760w. Epub 2008 Apr 22.
Methods of insertion of azafullerenes in single-walled carbon nanotubes (SWNTs) at different temperatures were investigated, while the effects of the conditions applied on the structure of azafullerene-based peapods, namely, C59N@SWNTs, were explored. Morphological characteristics of C59N@SWNTs were assessed and evaluated by means of high-resolution transmission electron microscopy (HR-TEM). Pathways and chemical reactions that occur upon encapsulation of C59N within SWNTs were evaluated. Monomeric azafullerenyl radical C59N. as inserted into SWNTs at high temperature, from purified (C59N)2 in the gas phase, can undergo a variety of different transformations forming dimers, oligomers or existing in its monomeric form inside SWNTs due to the stabilization effect by nanotube side walls. However, under milder conditions, that is, at lower temperature, bisazafullerene (C59N)2 can be inserted into SWNTs in its pristine dimeric form.
研究了在不同温度下将氮杂富勒烯插入单壁碳纳米管(SWNTs)的方法,同时探讨了所应用的条件对基于氮杂富勒烯的豆荚状结构(即C59N@SWNTs)的影响。通过高分辨率透射电子显微镜(HR-TEM)对C59N@SWNTs的形态特征进行了评估。评估了C59N封装在SWNTs内时发生的途径和化学反应。高温下从气相中的纯化(C59N)2插入SWNTs的单体氮杂富勒烯基自由基C59N·,由于纳米管侧壁的稳定作用,可发生各种不同的转变,形成二聚体、低聚物或以其单体形式存在于SWNTs内部。然而,在较温和的条件下,即在较低温度下,双氮杂富勒烯(C59N)2可以以其原始二聚体形式插入SWNTs。