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乙醇中C(60)富勒烯的结构与紫外可见光谱:分子动力学/量子力学序贯研究

Structure and UV-vis spectrum of C(60) fullerene in ethanol: a sequential molecular dynamics/quantum mechanics study.

作者信息

Malaspina Thaciana, Fileti Eudes E, Rivelino Roberto

机构信息

Instituto de Química, Universidade de São Paulo, 05513-970, São Paulo, SP, Brazil.

出版信息

J Phys Chem B. 2007 Oct 18;111(41):11935-9. doi: 10.1021/jp0746244. Epub 2007 Sep 25.

Abstract

A molecular dynamics simulation combined with semiempirical quantum mechanics calculations has been performed to investigate the structure, dynamical, and electronic properties of pure C60 in liquid ethanol. The behavior of the fullerene alcoholic solution was obtained by using the NPT ensemble under ambient conditions, including one C60 fullerene immersed in 1000 ethanol molecules. Our analyzed center-of-mass pairwise radial distribution function indicated that, on average, there are 32, 72, 132, and 187 ethanol molecules around, respectively, the first, second, third, and fourth solvation shells of the C60 molecule. To investigate the UV-vis transition energies of C60 in the presence of ethanol, we have considered constituents of the time uncorrelated supramolecular structures of the first solvation shell, i.e., clusters of C60@{EtOH}32 types. The semiempirical calculations were performed at the intermediate neglect of differential overlap level with configuration interaction singles (INDO/CIS). Our results have pointed out that the characteristic C60 UV-vis absorbance peaks are slightly shifted to longer wavelengths, as compared to the isolated molecule. These findings are in connection with the weak donor-acceptor character of the interactions involving electron lone pairs of oxygen atoms on the solvent and the fullerene surface.

摘要

结合半经验量子力学计算进行了分子动力学模拟,以研究液态乙醇中纯C60的结构、动力学和电子性质。通过在环境条件下使用NPT系综获得富勒烯醇溶液的行为,其中包括一个C60富勒烯浸没在1000个乙醇分子中。我们分析的质心成对径向分布函数表明,平均而言,C60分子的第一、第二、第三和第四溶剂化壳层周围分别有32、72、132和187个乙醇分子。为了研究乙醇存在下C60的紫外可见跃迁能,我们考虑了第一溶剂化壳层时间不相关超分子结构的组成部分,即C60@{EtOH}32类型的簇。半经验计算是在中级忽略微分重叠水平并结合单激发组态相互作用(INDO/CIS)下进行的。我们的结果指出,与孤立分子相比,C60的特征紫外可见吸收峰略微向更长波长移动。这些发现与涉及溶剂中氧原子孤对电子和富勒烯表面的相互作用的弱供体-受体性质有关。

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