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Structure, stability, depolarized light scattering, and vibrational spectra of fullerenols from all-electron density-functional-theory calculations

机译:来自全电子密度 - 官能理论计算的富勒烯酚的结构,稳定性,去极光散射和振动光谱

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摘要

We have investigated the stability, electronic properties, Rayleigh (elastic), and Raman (inelastic) depolarization ratios, infrared and Raman absorption vibrational spectra of fullerenols [C(60)(OH)(n)] with different degrees of hydroxylation by using all-electron density-functional-theory (DFT) methods. Stable arrangements of these molecules were found by means of full geometry optimizations using Becke's three-parameter exchange functional with the Lee, Yang, and Parr correlation functional. This DFT level has been combined with the 6-31G(d,p) Gaussian-type basis set, as a compromise between accuracy and capability to treat highly hydroxylated fullerenes, e.g., C(60)(OH)(36). Thus, the molecular properties of fullerenols were systematically analyzed for structures with n=1, 2, 3, 4, 8, 10, 16, 18, 24, 32, and 36. From the electronic structure analysis of these molecules, we have evidenced an important effect related to the weak chemical reactivity of a possible C(60)(OH)(24) isomer. To investigate Raman scattering and the vibrational spectra of the different fullerenols, frequency calculations are carried out within the harmonic approximation. In this case a systematic study is only performed for n=1-4, 8, 10, 16, 18, and 24. Our results give good agreements with the expected changes in the spectral absorptions due to the hydroxylation of fullerenes.
机译:通过使用所有我们已经调查了稳定性,电子性质,瑞利(弹性)和拉曼(无弹性)去极化比,富勒醇的红外和拉曼吸收振动光谱[C(60)(OH)(N)]与不同程度的羟基化的π电子密度官能理论(DFT)的方法。这些分子的稳定安排,通过使用贝克三参数交换与李,杨,和帕尔相关功能功能全几何优化的方式找到。此DFT水平已经结合6-31G(d,p)的高斯型基组,精度和能力之间(60)(36)的折衷来治疗高度羟基化富勒烯,例如,C(OH)。因此,富勒醇的分子特性进行了系统的分析,其中n = 1,2,3,4,8,10,16,18,24,32,和36从这些分子的电子结构的分析结构,我们已经证明有关一个可能的C(60)的弱化学反应性具有重要影响(OH)(24)的异构体。为了研究拉曼散射和不同富勒的振动光谱,频率计算谐波近似内进行。在这种情况下系统的研究是对于n = 1〜4,8,10,16,18仅执行,并且24.我们的研究结果,得到与在光谱吸收由于富勒烯的羟基化的预期的变化良好协议。

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