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Graphene oxide–carbon nanotube hybrid assemblies: cooperatively strengthened OH?OC hydrogen bonds and the removal of chemisorbed water

机译:氧化石墨烯-碳纳米管混合组件:协同增强OH?OC氢键并去除化学吸附的水

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Owing to their great significance for energy storage and sensing applications, multi-layer papers consisting of graphene oxide–carbon nanotube (GO–CNT) hybrid sheets were prepared by in situ exfoliation of graphite oxide in the presence of oxidized CNTs (oCNTs). For the first time we elucidate the influence of oCNTs on chemisorbed water (CW), i.e. the water molecules inherently bound to the oxygen functional groups (OFGs) of graphene oxide (GO) and responsible for irreversible structural damage upon thermal reduction processes. We show that oCNTs self-assemble onto GO sheets during the liquid phase processing steps by forming cooperatively strengthened OH?OC hydrogen bonds between the carboxylic groups of the oCNTs and OFGs of GO. At oCNT amounts of about 10 to 15 wt% this leads to the displacement of considerable amounts of CW without altering the original chemical composition of GO. The thermally reduced GO–CNT (rGO–CNT) papers reveal improved sp2 character and an enhancement of the specific capacitance by 75% with respect to thermally reduced GO (rGO), largely due to the effective removal of CW by oxidized CNTs. These findings disclose the relevance of the cooperative hydrogen bonding phenomena in graphene oxide paper/film electrodes for the development of improved electrochemical energy storage and sensing devices.
机译:由于它们在能量存储和传感应用中的重要意义,在存在碳纳米管的条件下,通过原位剥离氧化石墨制备了由氧化石墨烯-碳纳米管(GO-CNT)杂化片组成的多层纸。氧化碳纳米管(oCNTs)。我们首次阐明了oCNTs对化学吸附水(CW)的影响,即水分子固有地与氧化石墨烯(GO)的氧官能团(OFG)结合并造成不可逆的结构破坏在热还原过程中。我们表明,oCNTs在液相处理步骤中通过在oCNTs和GO的OFGs的羧基之间形成协同增强的OH?OC氢键而自组装到GO片材上。当oCNT的量为约10至15wt%时,这导致相当大量的CW被置换而不改变GO的原始化学组成。相对于热还原GO(rGO),热还原GO-CNT(rGO-CNT)纸显示出改进的sp 2 特性,比电容提高了75% ,主要是由于被氧化的CNT有效去除了CW。这些发现揭示了氧化石墨烯纸/膜电极中协同氢键合现象对于改进电化学能量存储和传感装置的开发的相关性。

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