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Dynamic electrosorption analysis as an effective means to characterise the structure of bulk graphene assemblies

机译:动态电吸附分析是表征大体积石墨烯组件结构的有效手段

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Restacking of graphene sheets to a graphite-like structure is a prevailing problem that is known to compromise the performance of individual graphene sheets in an assembled bulk form. To address this common problem efficiently and monitor the structure and quality of graphene products comprehensively, it is highly desirable to develop reliable metrology techniques for characterising graphene-based materials on a bulk assembly level and in a quantitative manner. Here, by revisiting the physicochemical principle of electrosorption, we propose a simple electrochemical approach, namely dynamic electrosorption analysis (DEA), as an easily accessible and effective technique for evaluation of the self-stacking behaviour of graphene. Taking multilayered chemically converted graphene films as a model, we demonstrate that the DEA technique can effectively reveal very subtle variation in accessible surface area and pore size of graphene assemblies in the liquid phase and thus can provide useful insights to the experimental design relating to restacking control. This work also reveals the huge effect some routine processing conditions, such as heat treatment and drying, can have on the structure and performance of graphene-based bulk materials, providing useful guidance for future manufacturing of this class of materials. Stacked up: Dynamic electrosorption analysis on multilayered chemically converted graphene films proves itself an easily accessible and powerful method for probing the stacking behaviour of graphene sheets (see figure). This method revealed a number of experimental and characterisation issues that are crucial for production and utilisation of graphene-base d-bulk materials, but are often overlooked in practice due to the limitations of the traditional characterisation techniques.
机译:将石墨烯片重新堆叠成类石墨结构是普遍存在的问题,已知该问题会损害组装的散装形式的单个石墨烯片的性能。为了有效地解决这个普遍的问题并全面监测石墨烯产品的结构和质量,非常需要开发可靠的计量技术,以在整体组装水平上以定量方式表征石墨烯基材料。在这里,通过重新研究电吸附的物理化学原理,我们提出了一种简单的电化学方法,即动态电吸附分析(DEA),作为一种易于使用且有效的技术来评估石墨烯的自堆积行为。以多层化学转化的石墨烯薄膜为模型,我们证明了DEA技术可以有效地揭示液相中石墨烯组件的可及表面积和孔径的细微变化,从而可以为与堆垛控制相关的实验设计提供有用的见解。这项工作还揭示了某些常规加工条件(如热处理和干燥)可能对石墨烯基散装材料的结构和性能产生巨大影响,从而为此类材料的未来制造提供了有用的指导。堆叠:对多层化学转化石墨烯薄膜进行的动态电吸附分析证明,它是一种易于使用且功能强大的方法,可用于探测石墨烯片材的堆叠行为(见图)。该方法揭示了许多实验和表征问题,这些问题对于生产和利用基于石墨烯的d-bulk材料至关重要,但由于传统表征技术的局限性,在实践中经常被忽略。

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