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首页> 外文期刊>Diamond and Related Materials >Transformation of multi-walled carbon nanotubes to amorphous nano-spheres, micron-size rods and flakes by oxidative sulfation reaction
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Transformation of multi-walled carbon nanotubes to amorphous nano-spheres, micron-size rods and flakes by oxidative sulfation reaction

机译:氧化硫酸化反应将多壁碳纳米管转变为无定形纳米球,微米级棒和薄片

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摘要

This study unveils a chemical functionalization provoked phase transformation in the naphthalene modified multi-walled carbon nanotubes (MWCNTs) and the associated formation of amorphous carbonaceous particles of various size and morphology. Functionalized nanotubes were prepared by a sulfonation-oxidization and a highly corrosive oxidative sulfation reaction then characterized by means of thermogravimetry/mass spectrometry, X-ray photoelectron spectroscopy, scanning and transmission electron microscopy and Raman spectroscopy. In spite of the small change in the composition of sulfonation and sulfation reaction mixtures, conventional sulfonation with oleum resulted in lower sulfonation and higher oxidative conversion of MWCNTs accompanied with a mediated exohedral amorphization of the nanotubes, induced by the yield of sp~3 hybridization defect introduction. On the other hand, the newly applied oxidative sulfation reaction provided severe oxidative etching, cutting and shortening of MWCNTs with a subsequent high conversion of sulfate derivatisation of oxidized functionalities, which induced complete collapse and phase transformation of the nanotubes. Amorphization and phase transformation of oxidative sulfated MWCNTs have led to the formation of highly dispersed nano- and micron-size amorphous carbon spheres, rods and flake-like structures. Water based colloidal systems of excellent stability were prepared from the oxidative sulfated carbonaceous material. Consequently, the employed highly corrosive sulfation reaction is capable to provide highly functionalized carbonaceous nano and micro-size particles from MWCNTs.
机译:这项研究揭示了萘改性的多壁碳纳米管(MWCNT)中的化学功能化引发的相变以及各种尺寸和形态的无定形碳质颗粒的相关形成。通过磺化-氧化和高度腐蚀性的氧化硫酸化反应制备官能化的纳米管,然后通过热重/质谱,X射线光电子能谱,扫描和透射电子显微镜以及拉曼光谱来表征。尽管磺化和硫酸化反应混合物的组成变化不大,但传统的磺化与发烟硫酸导致MWCNT的磺化程度较低和较高的氧化转化率,并伴随着sp〜3杂交缺陷的产生,导致纳米管介导的面外非晶化。介绍。另一方面,新应用的氧化硫酸化反应提供了严重的氧化蚀刻,切割和缩短了MWCNTs,随后硫酸盐衍生化了氧化官能团的高转化率,从而引发了纳米管的完全塌陷和相变。氧化硫酸盐碳纳米管的非晶化和相变已导致形成高度分散的纳米和微米尺寸的非晶碳球,棒和片状结构。由氧化硫酸碳质材料制备了具有优异稳定性的水基胶体体系。因此,采用的高度腐蚀的硫酸化反应能够从MWCNT提供高度官能化的碳纳米和微米级颗粒。

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