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用于量化取向纳米线阵列堆积形态的配位数模型。

Coordination number model to quantify packing morphology of aligned nanowire arrays.

机构信息

Department of Mechanical Engineering, Massachusetts Institute of Technology, 77 Massachusetts Ave, Cambridge, MA 02139, USA.

出版信息

Phys Chem Chem Phys. 2013 Mar 21;15(11):4033-40. doi: 10.1039/c3cp43762k.

Abstract

The average inter-wire spacing in aligned nanowire systems strongly influences both the physical and transport properties of the bulk material. Because most studies assume that the nanowire coordination is constant, a model that provides an analytical relationship between the average inter-wire spacings and measurable physical properties, such as nanowire volume fraction, is necessary. Here we report a continuous coordination number model with an analytical relationship between the average nanowire coordination, diameter, and volume fraction. The model is applied to vertically aligned carbon nanotube (VACNT) and nanofiber (VACNF) arrays, and the effective nanowire coordination number is established from easily accessible measures, such as the nanowire spacing and diameter. VACNT analysis shows that the coordination number increases with increasing nanowire volume fraction, leading the measured inter-CNT spacing values to deviate by as much as 13% from the spacing values predicted by the typically assumed hexagonal packing. VACNF analysis suggests that, by predicting an inter-fiber spacing that is within 6% of the reported value, the continuous coordination model outperforms both square and hexagonal packing in real nanowire arrays. Using this model, the average inter-wire spacing of nanowire arrays can be predicted, thus allowing more precise morphology descriptions, and thereby supporting the development of more accurate structure-property models of bulk materials comprised of aligned nanowires.

摘要

在取向纳米线体系中,平均线间距强烈影响着块体材料的物理和输运性质。由于大多数研究都假设纳米线的配位是恒定的,因此需要建立一种模型,该模型可以提供平均线间距与可测量的物理性质(如纳米线体积分数)之间的分析关系。在这里,我们报告了一种连续配位数模型,该模型在线平均配位、直径和体积分数之间存在分析关系。该模型应用于垂直排列的碳纳米管(VACNT)和纳米纤维(VACNF)阵列,并从易于获取的测量值(如纳米线间距和直径)来确定有效纳米线配位数。VACNT 分析表明,配位数随纳米线体积分数的增加而增加,导致测量的 CNT 之间的间距值与通常假设的六边形堆积的间距值偏差高达 13%。VACNF 分析表明,通过预测纤维间的间距值与报道值相差在 6%以内,连续配位模型在真实纳米线阵列中优于正方形和六边形堆积。使用该模型,可以预测纳米线阵列的平均线间距,从而可以更精确地描述形态,从而支持由取向纳米线组成的块体材料的更精确结构-性能模型的发展。

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