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Enhanced Thermal Conductivity of High Internal Phase Emulsions with Ultra-Low Volume Fraction of Graphene Oxide

机译:增强高内相乳液的热导率,具有石墨烯氧化物的超低体积分数

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摘要

Thermal conductivity enhancement in a multiphase fluid such as water-in-oil emulsion can substantially improve efficacies in a broad range of applications. However, nanoparticle additives that are often used to do so can catastrophically destabilize a delicate emulsion system, in our case, a high internal phase emulsion (HIPE), whereas large concentration of additives can adversely impact practical processing aspects. Therefore, means to enhance the thermal conductivity of emulsions with a minute concentration of additives (1 wt %) is a major scientific challenge. We report the enhancement in thermal conductivity of HIPE, by consigning either lipophilic GO (fGO) in the oil phase or hydrophilic GO in the water phase in combination with a well-known emulsifier. The rheological properties of fGO-HIPE showed non-Newtonian viscoelastic behavior similar to that of the original emulsion but with lower elastic modulus and viscosity, indicating that GO incorporation has enhanced processability. The thermal conductivity enhancements can be predicted by thermal circuit models, and the HIPEs with fGO and GO demonstrated 21 and 13% enhancements over the parent emulsion with a minor 0.1 w/w addition, respectively. A possible role of ordered colloidal structures of GO and fGO underlining this prepercolation behavior is inferred from comprehensive imaging and thermal studies.
机译:诸如油内乳液之类的多相流体中的热导率增强可显着提高各种应用中的效率。然而,通常用于这样做的纳米粒子添加剂可以造成突然破坏细腻的乳液系统,在我们的情况下,在我们的情况下,高内相乳液(HIPE),而大量的添加剂可能会产生不利影响的实际加工方面。因此,提高乳液的热导率的方法是具有微小浓度的添加剂(& 1wt%)是一个主要的科学挑战。通过在油相或亲水性与众所周知的乳化剂组合,通过寄射脂肪液(FGO),报告HIPE的热导率的增强。 FPO-HIPE的流变性能显示出类似于原始乳液的非牛顿粘弹性行为,但具有较低的弹性模量和粘度,表明GO掺入具有增强的可加工性。热电路模型可以预测导热率增强,以及具有FGO的臀部并通过父母乳液进行21和13%的增强,分别增加了较小的0.1w / w。从综合影像和热研究推断出下划线和FGO的有序胶体结构的可能作用。

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