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Construction of a double-walled carbon nanoring

机译:双壁碳nanoring建设

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摘要

The nanoring structure of cycloparaphenylenes (CPPs) can be considered as the shortest fragment of a carbon nanotube. Herein, we successfully prepared a double-walled carbon nanoring of [6]CPP subset of[12]CPP, which can be regarded as the shortest double-walled carbon nanotube. [6]CPP subset of[12]CPP was constructed through the supramolecular assembly, and its crystallographic structure was unambiguously determined by single-crystal X-ray diffraction. The host-guest interaction and charge transfer in [6]CPP subset of[12]CPP were disclosed by UV-Vis absorption, fluorescence, and electrochemical studies. Electron paramagnetic resonance (EPR) spectroscopy disclosed the stability of the [6]CPP subset of[12]CPP cation radical, whose unpaired spin was fully delocalized on the inner [6]CPP and well protected by outer [12]CPP. Moreover, [6]CPP subset of[12]CPP shows highly enhanced photoconductivity and photocurrent under light irradiation compared to those of pristine monomers. The self-assembly behavior of [6]CPP subset of[12]CPP was also studied, and it was found that [6]CPP subset of[12]CPP molecules tend to form a square rod structure in the DMF solution. Thus, these results demonstrate that this double-walled carbon nanoring material has a great potential application in photoelectronic devices and organic semiconductors.
机译:cycloparaphenylenes nanoring结构(cpp)可以被认为是最短的片段碳纳米管。准备了一个被称作碳nanoring[6] [12] CPP的CPP子集,可以被视为最短的双壁碳纳米管。[6] [12] CPP的CPP子集了超分子组装,其晶体结构是明确由单晶x射线衍射。主-客体相互作用和电荷转移[6] [12] CPP的CPP子集被紫外可见披露吸收、荧光和电化学研究。光谱学透露的稳定性[12]的[6]CPP子集CPP阳离子激进,谁的未配对完全离域内旋转[6] CPP和保护外[12]CPP。此外,[6][12]CPP显示高度的CPP子集增强的光电导性和光电流原始的光照射相比单体。[12] CPP的子集也研究,它是发现[6][12]CPP分子往往CPP子集方棒结构DMF解决方案。这个被称作碳nanoring材料巨大的潜力在光电子应用程序设备和有机半导体。

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