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Soft cutting of single-wall carbon nanotubes by low temperature ultrasonication in a mixture of sulfuric and nitric acids

机译:在硫酸和硝酸的混合物中通过低温超声软切割单壁碳纳米管

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To decrease single-wall carbon nanotube (SWCNT) lengths to a value of 100-200 nm, aggressive cutting methods, accompanied by a high loss of starting material, are frequently used. We propose a cutting approach based on low temperature intensive ultrasonication in a mixture of sulfuric and nitric acids. The method is nondestructive with a yield close to 100%. It was applied to cut nanotubes produced in three different ways: gas-phase catalysis, chemical vapor deposition, and electric-arc-discharge methods. Raman and Fourier transform infrared spectroscopy were used to demonstrate that the cut carbon nanotubes have a low extent of sidewall degradation and their electronic properties are close to those of the untreated tubes. It was proposed to use the spectral position of the far-infrared absorption peak as a simple criterion for the estimation of SWCNT length distribution in the samples.
机译:为了将单壁碳纳米管(SWCNT)的长度减小到100-200 nm,需要使用积极的切割方法以及大量的原材料损失。我们提出了一种基于在硫酸和硝酸的混合物中进行低温强化超声处理的切割方法。该方法是非破坏性的,收率接近100%。它被用于切割以三种不同方式生产的纳米管:气相催化,化学气相沉积和电弧放电方法。拉曼光谱和傅立叶变换红外光谱用于证明所切割的碳纳米管侧壁降解程度低,其电子性能与未处理的碳纳米管相近。提出将远红外吸收峰的光谱位置用作估计样品中SWCNT长度分布的简单标准。

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