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Fabrication of superelastic and highly conductive graphene aerogels by precisely 'unlocking' the oxygenated groups on graphene oxide sheets

机译:通过精确地“解锁”氧化氧化物片上的含氧基团制备超弹性和高导电石墨烯气凝胶

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Oxygenated groups in graphene oxide (GO) have significant influences on the physicochemical properties of GO. Accurate identification and manipulation of oxygenated groups should be essential for sheets functionalization and assembly, but remains challenging. Herein a novel design of oxygenated groups on GO via a facile alkali-annealing strategy is reported to rationally "unlock" specific groups and increase covalent bonding density on sheets. The structural evolution of epoxy and enriched in hydroxyl are well monitored and verified. Based on the fact that hydroxyl is widely regarded as active sites for cross-linker polyvinyl alcohol, a well interweaved graphene aerogel (GA) with ordered "layer-strut" bracing architectures is successfully fabricated. The constructed GA possesses an ultralow density of 1.73 mg cm(-3), exceptional resilience with 85% compressive strength recovery even after 1000 cycles, and high conductivity of 17.1 S m(-1), demonstrating the significantly reinforced interplays between adjacent layers. The highest specific conductivity (sigma/rho) of the optimized GA reaches 98.8 S cm(2) g(-1), which is far superior to conventional GA assembled by GO in as-prepared form and exceeding most graphene-based aerogels reported. This new insight into precise engineering oxygenated structures will provide inspirational ideas towards more elaborate graphene-related architectures and a better overall understanding of GO structure. (C) 2020 Elsevier Ltd. All rights reserved.
机译:石墨烯(GO)中的含氧基团对GO的物理化学性质有重大影响。精确的鉴定和操纵含氧基团对于片状官能化和组装至关重要,但仍然是挑战性的。本文据报道,通过容易的碱 - 退火策略进行含氧基团的新颖设计,以合理地“解锁”特定基团,并增加片材上的共价键合密度。环氧树脂和富含羟基富集的结构演变是良好的监测和验证。基于羟基广泛认为作为交联剂聚乙烯醇的活性位点,成功地制造了具有有序的“层支撑”支撑架构的孔被交织的石墨烯气凝胶(GA)。构造的GA具有1.73mg cm(-3)的超级密度,甚至在1000次循环之后具有85%的压缩强度回收的特殊弹性,并且高17.1升(-1)的高导电性,展示了相邻层之间的显着增强的相互作用。优化Ga的最高特异性电导率(Sigma / Rho)达到98.8 s cm(2)g(2)g(-1),其远远优于通过以制备的形式组装并超过大多数基于石墨烯的气凝胶。这种新的洞察力对精确的工程氧化结构将为更详细的石墨烯有关的架构提供鼓舞人心的想法,并更好地了解GO结构的整体理解。 (c)2020 elestvier有限公司保留所有权利。

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