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Structural studies of carbon nanotubes obtained by template deposition using high-energy X-ray scattering

机译:通过高能X射线散射通过模板沉积获得的碳纳米管的结构研究

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摘要

High-energy X-ray diffraction has been used to study the structure of multi-wall carbon nanotubes, produced by template pyrolytic carbon deposition from thermal decomposition of propylene inside channels of an alumina membrane. X-ray diffraction intensities were measured on the powdered samples employing an image plate detector, integrated over the diffraction rings and converted to a radial distribution function by the Fourier transform. Defective hexagonal networks, generated by introducing the pentagon-heptagon pairs were rolled up to form regular cylinders and relaxed with a conjugate-gradient algorithm using the Brenner-Tersoff potential. A comparison of the simulated and experimental radial distribution functions shows that the model of the multi-wall carbon nanotubes, based on the defective nanotube structures, accounts very well for the experimental data.
机译:高能X射线衍射已被用于研究多壁碳纳米管的结构,该碳纳米管是通过模板热解碳沉积而产生的,该模板是由氧化铝膜通道内丙烯的热分解产生的。使用成像板检测器测量粉末样品的X射线衍射强度,将其积分到衍射环上,并通过傅立叶变换转换为径向分布函数。通过引入五边形-七边形对生成的有缺陷的六边形网络被卷起以形成规则圆柱体,并使用Brenner-Tersoff势用共轭梯度算法进行松弛。模拟和实验径向分布函数的比较表明,基于有缺陷的纳米管结构的多壁碳纳米管的模型很好地说明了实验数据。

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