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单层石墨烯/电解质界面的电化学表征:溶剂对界面电容的影响

Electrochemical Characterization of Single Layer Graphene/Electrolyte Interface: Effect of Solvent on the Interfacial Capacitance.

作者信息

Wu Yih-Chyng, Ye Jianglin, Jiang Gengping, Ni Kun, Shu Na, Taberna Pierre-Louis, Zhu Yanwu, Simon Patrice

机构信息

Université Paul Sabatier, CIRIMAT UMR CNRS 5085, 118 route de Narbonne, 31062, Toulouse, France.

Réseau sur le Stockage Electrochimique de l'Energie (RS2E), FR CNRS 3459, France.

出版信息

Angew Chem Int Ed Engl. 2021 Jun 7;60(24):13317-13322. doi: 10.1002/anie.202017057. Epub 2021 Mar 11.

Abstract

The development of the basic understanding of the charge storage mechanisms in electrodes for energy storage applications needs deep characterization of the electrode/electrolyte interface. In this work, we studied the charge of the double layer capacitance at single layer graphene (SLG) electrode used as a model material, in neat (EMIm-TFSI) and solvated (with acetonitrile) ionic liquid electrodes. The combination of electrochemical impedance spectroscopy and gravimetric electrochemical quartz crystal microbalance (EQCM) measurements evidence that the presence of solvent drastically increases the charge carrier density at the SLG/ionic liquid interface. The capacitance is thus governed not only by the electronic properties of the graphene, but also by the specific organization of the electrolyte side at the SLG surface originating from the strong interactions existing between the EMIm cations and SLG surface. EQCM measurements also show that the carbon structure, with the presence of sp carbons, affects the charge storage mechanism by favoring counter-ion adsorption on SLG electrode versus ion exchange mechanism in amorphous porous carbons.

摘要

对于储能应用中电极电荷存储机制的基本理解的发展,需要对电极/电解质界面进行深入表征。在这项工作中,我们研究了用作模型材料的单层石墨烯(SLG)电极在纯(EMIm-TFSI)和溶剂化(与乙腈)离子液体电极中的双层电容电荷。电化学阻抗谱和重量法电化学石英晶体微天平(EQCM)测量的结合表明,溶剂的存在显著增加了SLG/离子液体界面处的电荷载流子密度。因此,电容不仅受石墨烯电子性质的控制,还受SLG表面电解质侧特定组织的影响,这种组织源于EMIm阳离子与SLG表面之间存在的强相互作用。EQCM测量还表明,具有sp碳的碳结构通过促进反离子在SLG电极上的吸附而不是无定形多孔碳中的离子交换机制,影响电荷存储机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f0b/8252098/48a3db1cc2c6/ANIE-60-13317-g002.jpg

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