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A carbon–carbon hybrid – immobilizing carbon nanodots onto carbon nanotubes

机译:碳-碳混合体-将碳纳米点固定在碳纳米管上

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摘要

The thrust of this work is to integrate small and uniformly sized carbon nanodots (CNDs) with single-walled carbon nanotubes (SWCNT) of different diameters as electron donors and electron acceptors, respectively, and to test their synergetic interactions in terms of optoelectronic devices. CNDs (denoted pCNDs, where p indicates pressure) were prepared by pressure-controlled microwave decomposition of citric acid and urea. pCNDs were immobilized on single-walled carbon nanotubes by wrapping the latter with poly(4-vinylbenzyl trimethylamine) (PVBTA), which features positively charged ammonium groups in the backbone. Negatively charged surface groups on the CNDs lead to attractive electrostatic interactions. Ground state interactions between the CNDs and SWCNTs were confirmed by a full-fledged photophysical investigation based on steady-state and time-resolved techniques. As a complement, charge injection into the SWCNTs upon photoexcitation was investigated by ultra-short time-resolved spectroscopy.
机译:这项工作的重点是将小型且尺寸均匀的碳纳米点(CND)与不同直径的单壁碳纳米管(SWCNT)分别集成为电子供体和电子受体,并测试它们在光电器件方面的协同作用。 CND(表示为pCND,其中p表示压力)是通过柠檬酸和尿素的压力控制微波分解制备的。通过用聚(4-乙烯基苄基三甲胺)(PVBTA)包裹单壁碳纳米管,将pCND固定在单壁碳纳米管上,该聚(4-乙烯基苄基三甲基胺)(PVBTA)在骨架上具有带正电的铵基。 CND上带负电荷的表面基团导致有吸引力的静电相互作用。 CND和SWCNT之间的基态相互作用已通过基于稳态和时间分辨技术的全面光物理研究得到证实。作为补充,通过超短时间分辨光谱研究了光激发后向SWCNT中注入的电荷。

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