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Enhancement of microplasma-based water-solubilization of single-walled carbon nanotubes using gas bubbling in water

机译:使用水中的气泡鼓泡增强基于微等离子体的单壁碳纳米管的水溶性

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The authors have previously proposed a novel technique for the preparation of water-soluble carbon nanotubes (CNTs) using microplasma generated by a pulsed streamer discharge in water. This paper describes an improvement in the method of the microplasma-based CNT solubilization process by the use of gas bubbling in water. Oxygen, argon and nitrogen were used as bubbling gas in order to clarify the effects of the gas species on the single-walled CNT (SWCNT) solubilization efficiency. Ultraviolet-visible absorption spectra of the SWCNT suspensions revealed that the SWCNT solubility was increased by more than two times by using gas bubbling together with microplasma treatment. No significant difference was observed among the three gas species tested. Fourier transform infrared (FTIR)spectroscopy and x-ray photoelectron spectroscopy (XPS) analysis showed that the number of-OH groups, introduced on the SWCNT surface by the microplasma treatment, was increased by gas bubbling. Optical emission measurements also showed that the number of highly oxidative oxygen and hydrogen radicals, which were generated by the microplasma, was also increased by gas bubbling. These results indicate that gas bubbling has positive effects on microplasma-based SWCNT solubilization as a result of enhanced radical formation and functionalization of the SWCNT surface.
机译:作者先前已经提出了一种新技术,该技术利用水中的脉冲流光放电产生的微等离子体来制备水溶性碳纳米管(CNT)。本文描述了通过使用水中的气体鼓泡来改进基于微等离子体的CNT增溶方法的方法。为了阐明气体种类对单壁CNT(SWCNT)增溶效率的影响,使用氧气,氩气和氮气作为起泡气体。 SWCNT悬浮液的紫外-可见吸收光谱显示,通过使用气泡和微等离子体处理,SWCNT的溶解度增加了两倍以上。在测试的三种气体种类之间未观察到显着差异。傅里叶变换红外(FTIR)光谱和X射线光电子能谱(XPS)分析表明,通过微泡处理,在SWCNT表面引入的-OH基数量增加了。光学发射测量还表明,由微等离子体产生的高氧化性氧和氢自由基的数量也因气体起泡而增加。这些结果表明,由于增强的自由基形成和SWCNT表面的功能化,气体起泡对基于微等离子体的SWCNT增溶具有积极作用。

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