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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >AN EMBEDDED RING APPROACH TO THE VIBRATIONAL DYNAMICS OF LOW-DIMENSIONAL AMORPHOUS SOLIDS WITH APPLICATIONS TO GRAPHITIC CARBON MATERIALS
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AN EMBEDDED RING APPROACH TO THE VIBRATIONAL DYNAMICS OF LOW-DIMENSIONAL AMORPHOUS SOLIDS WITH APPLICATIONS TO GRAPHITIC CARBON MATERIALS

机译:低维非晶固体振动动力学的嵌入式环法及其在石墨材料上的应用

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摘要

A theoretical approach has been developed to model the vibrational modes of amorphous, two-dimensional materials. The method considers that the vibrational density of states is composed primarily of states originating from embedded ring structures of medium-range order. The materials are modeled as continuous random networks comprised of a statistical distribution of symmetric, planar rings with four to eight members. The rings are treated as local structural units embedded in the material, similar to molecules within a solid. The ring potentials are approximated with a valence force model (bond-stretching and bond-angle-bending force constants) modified by a third harmonic, effective force constant coupling the rings to the surrounding network. The molecular dynamics of the rings are analyzed with the use of group theory, and the frequencies are calculated using a normal coordinate treatment. The utility of the embedded ring approach lies in its use of the material's ring statistics and ring mode frequencies, allowing determination of the structure of an amorphous material from its vibrational spectrum or prediction of vibrational spectra and density of states from structural models. The method is applied here to various graphitic carbon materials as a test case and predicts a set of force constants and Raman spectra consistent with previous data and structural models. (C) 1997 Elsevier Science Ltd. [References: 71]
机译:已经开发出一种理论方法来模拟非晶态二维材料的振动模式。该方法认为状态的振动密度主要由源自中等距离阶的嵌入式环结构的状态组成。这些材料被建模为连续的随机网络,该网络由具有四到八个成员的对称平面环的统计分布组成。这些环被视为嵌入材料中的局部结构单元,类似于固体中的分子。利用由三次谐波修改的化合价模型(键拉伸和键角弯曲力常数)估算环势,有效力常数将环耦合到周围网络。使用基团理论分析环的分子动力学,并使用正态坐标处理来计算频率。嵌入式环方法的用途在于使用材料的环统计信息和环模式频率,从而可以根据其振动光谱确定非晶材料的结构,或者根据结构模型预测振动光谱和状态密度。该方法在此作为测试案例应用于各种石墨碳材料,并预测与以前的数据和结构模型一致的一组力常数和拉曼光谱。 (C)1997 Elsevier Science Ltd. [参考:71]

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