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Refinements to the structure of graphite oxide: absolute quantification of functional groups via selective labelling

机译:氧化石墨的结构改进:绝对量化的官能团选择标签

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摘要

Chemical modification and functionalization of inherent functional groups within graphite oxide ( GO) are essential aspects of graphene-based nano-materials used in wide-ranging applications. Despite extensive research, there remains some discrepancy in its structure, with current knowledge limited primarily to spectroscopic data from XPS, NMR and vibrational spectroscopies. We report herein an innovative electrochemistry-based approach. Four electroactive labels are chosen to selectively functionalize groups in GO, and quantification of each group is achieved by voltammetric analysis. This allows for the first time quantification of absolute amounts of each group, with a further advantage of distinguishing various carbonyl species: namely ortho-and para-quinones from aliphatic ketones. Intrinsic variations in the compositions of permanganate versus chlorate-oxidized GOs were thus observed. Principal differences include permanganate-GO exhibiting substantial quinonyl content, in comparison to chlorate-GO with the vast majority of its carbonyls as isolated ketones. The results confirm that carboxylic groups are rare in actuality, and are in fact entirely absent from chlorate-GO. These observations refine and advance our understanding of GO structure by addressing certain disparities in past models resulting from employment of different oxidation routes, with the vital implication that GO production methods cannot be used interchangeably in the manufacture of graphene-based devices.
机译:化学改性和功能化固有的官能团在氧化石墨石墨烯的(去)是至关重要的方面纳米材料应用于广泛的应用程序。尽管广泛的研究,但仍有一些在其结构差异,电流主要知识有限的光谱数据XPS、NMR和振动光谱。在此报告一个创新electrochemistry-based方法。电活性标签选择选择性去,使职能化组织和量化的每组是通过伏安分析。这允许第一次量化每组的绝对数量,进一步区分不同的羰基的优势物种:即ortho-and对苯醌脂肪族酮类。作文高锰酸盐和因此被观察chlorate-oxidized率高。主要包括permanganate-GO差异展示大量quinonyl内容与绝大多数chlorate-GO相比其羰基的孤立的酮。确认羧基组是罕见的现状,事实上完全缺席chlorate-GO。推进我们的理解结构解决某些过去的模型之间的差距造成就业不同的氧化路线,至关重要的暗示生产方法不能互换使用在石墨烯的生产设备。

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