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Charge transfer in steam purified arc discharge single walled carbon nanotubes filled with lutetium halides

机译:蒸汽净化电弧放电的电荷转移单壁碳纳米管含有储息

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In the present work, the effect of doping on electronic properties in bulk purified and filled arc-discharge single-walled carbon nanotubes samples is studied for the first time by in situ Raman spectroelectrochemical method. A major challenge to turn the potential of SWCNTs into customer applications is to reduce or eliminate their contaminants by means of purification techniques. Besides, the endohedral functionalization of SWCNTs with organic and inorganic materials (i.e. metal halides) allows the development of tailored functional hybrids. Here, we report the purification and endohedral functionalization of SWCNTs with doping affecting the SWCNTs. Steam-purified SWCNTs have been filled with selected lutetium(iii) halides, LuCl3, LuBr3, LuI3, and sealed using high-temperature treatment, yielding closed-ended SWCNTs with the filling material confined in the inner cavity. The purified SWCNTs were studied using TGA, EDX, STEM and Raman spectroscopy. The lutetium(iii) halide-filled SWCNTs (LuX3@SWCNTs) were characterized using STEM, EDX, Raman spectroscopy and in situ Raman spectroelectrochemistry. It was found that there is a charge transfer between the SWCNTs and the encapsulated LuX3 (X = Cl, Br, I). The obtained data testify to the acceptor doping effect of lutetium(iii) halides incorporated into the SWCNT channels, which is accompanied by the charge transfer from nanotube walls to the introduced substances.
机译:在本作工作中,首次首次通过原位拉曼光谱电化学方法研究掺杂在散装纯净和填充的弧形单壁碳纳米管样品中的电子性质的影响。将SWCNTs潜力转化为客户应用的主要挑战是通过净化技术来减少或消除污染物。此外,具有有机和无机材料的SWCNTs的Endohedral官能化(即金属卤化物)允许制定定制的功能杂种。在此,我们报告了SWCNT的纯化和腹端官能化,掺杂影响SWCNTS。蒸汽纯化的SWCNTS已填充有选定的含含氟化锂(III)卤化物,LUCL3,LUBR3,LUI3,并使用高温处理密封,并用填充材料施加在内腔内的填充材料。使用TGA,EDX,茎和拉曼光谱研究纯化的SWCTS。使用茎,EDX,拉曼光谱和原位拉曼光谱电化学,表征含卤化含量(III)卤化物的SWCNT(Lux3 @ Swcnts)。发现SWCNTS和封装的Lux3(X = Cl,B,i)之间存在电荷转移。所获得的数据证明了含入SWCNT通道中的卢特(III)卤化物的受体掺杂效果,其伴随着从纳米管壁到引入物质的电荷转移。

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