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Synthesis and thermo-physical properties of deep eutectic solvent-based graphene nanofluids

机译:深共熔溶剂基石墨烯纳米流体的合成及热物理性质

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This study introduces a new class of heat transfer fluids by dispersing functionalised graphene oxide nanoparticles (GNPs) in ammonium and phosphonium-based deep eutectic solvents (DESs) without the aid of a surfactant. Different molar ratios of salts and hydrogen bond donors (HBD) were used to synthesise DESs for the preparation of different concentrations of graphene nanofluids (GNFs). The concentrations of GNPs were 0.01 wt%, 0.02 wt% and 0.05 wt %. Homogeneous and stable suspensions of nanofluids were obtained by high speed homogenisation and an ultrasonication process. The stability of the GNFs was determined through visual observation for 4 weeks followed by a centrifugal process (5000-20000 rpm) for 30 min in addition to zeta potential studies. Dispersion of the GNPs in DES was observed using an optical microscope. The synthesised DES-based GNFs showed no particle agglomeration and formation of sediments in the nanofluids. Thermo-physical properties such as thermal conductivity and specific heat of the nanofluids were also investigated in this research. The highest thermal conductivity enhancement of 177% was observed. The findings of this research provide a new class of engineered fluid for heat transfer applications as a function of temperature, type and composition DESs as well as the GNPs concentration.
机译:这项研究通过不借助表面活性剂将功能化的氧化石墨烯纳米颗粒(GNP)分散在基于铵和phospho的深共熔溶剂(DES)中,从而引入了一类新型的传热流体。盐和氢键供体(HBD)的不同摩尔比可用于合成DES,以制备不同浓度的石墨烯纳米流体(GNF)。 GNP的浓度为0.01重量%,0.02重量%和0.05重量%。通过高速均质化和超声处理获得纳米流体的均质且稳定的悬浮液。除了zeta电位研究外,还通过肉眼观察4周,随后离心过程(5000-20000 rpm)30分钟来确定GNF的稳定性。使用光学显微镜观察到GNP在DES中的分散。合成的基于DES的GNFs在纳米流体中没有颗粒团聚和沉积物形成。在这项研究中,还研究了纳米流体的热物理性质,如热导率和比热。观察到最高的热导率提高了177%。这项研究的发现为传热应用提供了一类新的工程流体,它是温度,类型和组成DES以及GNP浓度的函数。

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