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Pseudonegative Thermal Expansion and the State of Water in Graphene Oxide Layered Assemblies

机译:假负热膨胀和氧化石墨烯层状组件中的水状态

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摘要

Unraveling the complex Interplay between thermal properties and hydration is a part of understanding the fundamental properties of many soft materials and very essential for many applications. Here we show that graphene oxide (GO) demonstrates a highly negative thermal expansion (NTE) coefficient owing to unique thermohydration processes related with fast transport of water between the GO sheets, the amphiphilic nature of nanochannels, and close-to-zero intrinsic thermal expansion of GO. The humidity-dependent NTE of GO layered assemblies, or "pseudonegative thermal expansion" (PNTE), differs from that of other hygroscopic materials due to its relatively fast and highly reversible expansion/contraction cycles and occurrence at low humidity levels while bearing similarities to classic NTE. Thermal expansion of polyvinyl alcohol/GO composites is easily tunable with additional intricacy of thermohydration effects. PNTE combined with isotropy, nontoxicity, and mechanical robustness is an asset for applications of actuators, sensors, MEMS devices, and memory materials and crucial for developing methods of thermal/photopatteming of GO devices.
机译:弄清热学性质与水合之间的复杂相互作用是理解许多软质材料的基本性质的一部分,对于许多应用而言非常重要。在这里,我们显示氧化石墨烯(GO)表现出高度负的热膨胀(NTE)系数,这归因于与水在GO片之间的快速传输,纳米通道的两亲性质以及接近零的固有热膨胀有关的独特的热水化过程GO。 GO分层组件的湿度相关NTE或“假正负热膨胀”(PNTE)与其他吸湿性材料不同,这是因为其相对快速且高度可逆的膨胀/收缩循环以及在低湿度下发生,同时与经典吸湿材料相似NTE。聚乙烯醇/ GO复合材料的热膨胀易于调节,并具有额外的复杂的水合效应。 PNTE与各向同性,无毒和机械坚固性相结合,是执行器,传感器,MEMS器件和存储材料应用的资产,对于开发GO器件的热/照相制图方法至关重要。

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