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Graphene delamination using 'electrochemical methods': an ion intercalation effect

机译:石墨烯分层使用电化学方法:离子夹层的影响

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摘要

The mechanism of graphene delamination from a Pt catalyst growth surface with electrochemical methods is studied. After a water intercalation step, an electrochemical graphene delamination process is done with a variety of different electrolytes. It is shown that (hydrogen or oxygen) bubble formation is not the main driving force to decouple graphene from its catalyst growth substrate. Ion intercalation is identified as the primary component for a fast graphene delamination process from its catalytic growth substrate. When the Pt/graphene sample is negatively charged, cations will intercalate, assuming they do not reduce within the electrochemical window of the solvent. This cation intercalation does result in graphene delamination. In the same way, anions intercalate in positively charged Pt/graphene samples when they do not react within the electrochemical window of the solvent. Furthermore, it is shown that applying a potential is sufficient (current is not needed) to induce ion intercalation and, as a result, graphene delamination. These findings open the door to avoid Na+ or K+ contamination introduced during currently described electrochemical graphene delamination. Alternative electrolytes (i.e. ammonium hydroxide and tetraethylammonium hydroxide) are proposed, due to the absence of alkali contaminants and rapid cation intercalation to delaminate graphene.
机译:石墨烯的机制从Pt分层增长表面电化学催化剂方法进行了研究。一步,一个电化石墨烯分层是用各种不同的过程电解质。氧气)泡沫的形成不是主要驾驶力解耦的石墨烯催化剂生长基质。石墨烯作为主要成分为快分层过程的催化生长衬底。带负电,阳离子插入,假设他们不减少中电化学窗口的溶剂。阳离子夹层并导致石墨烯分层。带正电的Pt /石墨烯样品的时候他们并不在电化学反应窗口的溶剂。应用潜力是足够的(电流不需要)诱导离子夹层,因此,石墨烯分层。结果开门以免Na +或者K +目前污染期间推出的电化石墨烯分层描述。替代电解质(即氢氧化铵和氢氧化四乙铵)提出,由于缺乏碱和污染物快速阳离子夹层分层石墨烯。

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