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控制纳米管尺寸:单壁混合氧化物纳米管的组成、直径与内能之间的相关性

Controlling nanotube dimensions: correlation between composition, diameter, and internal energy of single-walled mixed oxide nanotubes.

作者信息

Konduri Suchitra, Mukherjee Sanjoy, Nair Sankar

机构信息

School of Chemical & Biomolecular Engineering, Georgia Institute of Technology, 311 Ferst Drive NW, Atlanta, Georgia 30332-0100, USA.

出版信息

ACS Nano. 2007 Dec;1(5):393-402. doi: 10.1021/nn700104e.

Abstract

Control over the diameter of nanotubes is of significance in manipulating their properties, which depend on their dimensions in addition to their structure and composition. This aspect has remained a challenge in both carbon and inorganic nanotubes, since there is no obvious aspect of the formation mechanism that allows facile control over nanotube curvature. Here we develop and analyze a quantitative correlation between the composition, diameter, and internal energy of a class of single-walled mixed oxide aluminosilicogermanate (AlSiGeOH) nanotubes. A series of synthetic AlSiGeOH nanotubes with varying Si/Ge ratio are characterized by X-ray photoelectron spectroscopy, vibrational spectroscopy, energy dispersive X-ray spectroscopy, and X-ray diffraction to relate their compositions and diameters. We then study these nanotubes computationally by first parametrizing and validating a suitable interatomic potential model, and then using this potential model to investigate the internal energy of the nanotube as a function of diameter and composition via molecular dynamics simulations. There are minima in the internal energy as a function of diameter which progressively shift to larger nanotube diameters with increasing Ge content. An approximate analytical theory of nanotube diameter control, which contains a small number of physically significant fitted parameters, well describes the computational data by relating the composition and geometry to the strain energy of bending into a nanotube. The predicted composition-dependent shift in the energetically favored diameter follows the experimental trends. We suggest related methods of controlling nanotube energetics and their role in engineering nanotubes of controlled dimensions by liquid-phase chemistry.

摘要

控制纳米管的直径对于操控其性质具有重要意义,纳米管的性质除了取决于其结构和组成外,还依赖于其尺寸。在碳纳米管和无机纳米管中,这一方面一直是个挑战,因为在形成机制中没有明显的方面能够轻松控制纳米管的曲率。在此,我们建立并分析了一类单壁混合氧化物铝硅锗酸盐(AlSiGeOH)纳米管的组成、直径和内能之间的定量关系。通过X射线光电子能谱、振动光谱、能量色散X射线光谱和X射线衍射对一系列具有不同Si/Ge比的合成AlSiGeOH纳米管进行表征,以关联它们的组成和直径。然后,我们通过首先对合适的原子间势模型进行参数化和验证,然后使用该势模型通过分子动力学模拟研究纳米管的内能随直径和组成的变化,对这些纳米管进行计算研究。内能随直径的变化存在最小值,随着Ge含量的增加,这些最小值逐渐向更大的纳米管直径移动。一种包含少量具有物理意义的拟合参数的纳米管直径控制近似解析理论,通过将组成和几何形状与弯曲成纳米管的应变能相关联,很好地描述了计算数据。预测的能量有利直径随组成的变化遵循实验趋势。我们提出了控制纳米管能量学的相关方法及其在通过液相化学工程制备尺寸可控的纳米管中的作用。

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