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首页> 外文期刊>Small >In Situ Electrochemical Synthesis and Deposition of Discotic Hexa-peri-hexabenzocoronene Molecules on Electrodes: Self-Assembled Structure, Redox Properties, and Application for Supercapacitor
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In Situ Electrochemical Synthesis and Deposition of Discotic Hexa-peri-hexabenzocoronene Molecules on Electrodes: Self-Assembled Structure, Redox Properties, and Application for Supercapacitor

机译:电极上盘状六元-己-六苯并二茂铁分子的原位电化学合成和沉积:自组装结构,氧化还原特性及其在超级电容器中的应用

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摘要

Discotic hexa-peri-hexabenzocoronene (HBC) molecules are synthesized by electrochemical cyclodehydrogenation reaction and in situ self-assembled to -electronic, discrete nanofibular objects with an average diameter about 70 nm, which are deposited directly onto the electrode. The nanofibers consist of columnar arrays of the -stacked HBC molecules and the intercolumnar distance is determined to be 1.19 nm by X-ray diffraction, which corresponds well to the distance of 1.1 nm observed by high-resolution transmitting electron microscopy. The diameter of the molecular columns matches the size of the discotic HBC molecule indicating face-to-face -stacking of HBC units in the column. The HBC nanofibers on electrode are redox active, and the nanosized columnar structures provide a huge surface area, which is a great benefit for the charging/discharging process, delivering excellent capacitance of 155 F g(-1). The described electrochemical deposition method shows great advantage for self-assembling the family of insoluble and structurally designable graphene-like nano materials, which constitutes an important step toward molecular electronics.
机译:通过电化学环脱氢反应合成盘状六-六-六苯并co烯(HBC)分子,并原位自组装为平均直径约为70 nm的电子离散纳米纤维物体,并将其直接沉积到电极上。纳米纤维由堆积的HBC分子的柱状阵列组成,通过X射线衍射确定柱间距离为1.19 nm,这与高分辨率透射电子显微镜观察到的1.1 nm距离非常吻合。分子柱的直径与盘状HBC分子的大小匹配,表明柱中HBC单元面对面堆叠。电极上的HBC纳米纤维具有氧化还原活性,纳米尺寸的柱状结构提供了巨大的表面积,这对于充放电过程非常有利,可提供155 F g(-1)的出色电容。所述的电化学沉积方法显示出自组装不溶且结构可设计的类石墨烯纳米材料家族的巨大优势,这构成了迈向分子电子学的重要一步。

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