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首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >An experimental study on thermal conductivity enhancement of DI water-EG based ZnO(CuO)/graphene wrapped carbon nanotubes nanofluids
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An experimental study on thermal conductivity enhancement of DI water-EG based ZnO(CuO)/graphene wrapped carbon nanotubes nanofluids

机译:DI水 - 例如基于ZnO(CuO)/石墨烯包裹碳纳米管纳米流体的导热性增强的实验研究

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摘要

The present study describes a facile synthesis procedure for nanocomposites consisting of 1D carbon nanotubes, 2D graphene and metal-oxide nanoparticles (CuO, ZnO) referred as metal-oxide dispersed on graphene-wrapped carbon nanotubes (CuO/GC and ZnO/GC) nanocomposites. Moreover, nanofluids were prepared by dispersing the above composites and the thermal conductivity of these nanofluids has been measured. Initially, GC was synthesized by a chemical vapor deposition technique using the mixture of graphene oxide (GO) and MmNi(3) as catalyst and further purified by removing catalyst impurities and amorphous carbon. Afterwards, synthesis of metal-oxide dispersed on GC nanocomposites has been done. The formation of nanocomposites has been confirmed by X-ray diffraction, scanning electron microscope, and transmission electron microscope. Further, nanofluids were prepared by dispersing nanocomposites (GC, CuO/GC, and ZnO/GC) in de-ionized (DI) water and ethylene glycol (EG) without any functionalization and surfactant. After confirming the stability of nanofluids by zeta potential analysis, thermal conductivity of these nanofluids was measured at different temperatures. GC, ZnO/GC and CuO/GC dispersed DI water based nanofluids show an enhancement of 22.6%, 24.1% and 26.0% for 0.015 vol. % at 50 degrees C, respectively. Further, an enhancement of 15.5%, 17.7% and 21.2% was observed for GC, ZnO/GC and CuO/GC dispersed EG based nanofluids for 0.015 vol. % at 50 degrees C, respectively.
机译:本研究描述了一种用于由1D碳纳米管,2D石墨烯和金属氧化物纳米颗粒(CuO,ZnO)组成的纳米复合材料的容易合成方法,称为分散在石墨烯包裹的碳纳米管(CUO / GC和ZnO / GC)纳米复合材料上的金属氧化物。此外,通过将上述复合材料分散并测量这些纳米流体的导热率来制备纳米流体。最初,通过使用石墨烯(GO)和MMNI(3)的混合物作为催化剂的化学气相沉积技术合成GC,并通过除去催化剂杂质和非晶碳进一步纯化。然后,已经完成了分散在GC纳米复合材料上的金属氧化物的合成。通过X射线衍射,扫描电子显微镜和透射电子显微镜确认了纳米复合材料的形成。此外,通过将纳米复合材料(GC,CUO / GC和ZnO / GC)分散在去离子(DI)水和乙二醇(例如)中而无需任何官能化和表面活性剂来制备纳米流体。通过Zeta电位分析确认纳米流体的稳定性,在不同温度下测量这些纳米流体的导热率。 GC,ZnO / GC和CuO / GC分散的二水分纳米流体显示出增强22.6%,24.1%和26.0%,0.015 Vol。分别在50℃下%。此外,针对GC,ZnO / GC和CuO / GC分散的GC,ZnO / GC和CuO / GC分散的增强增强了15.5%,17.7%和21.2%,例如纳米流体为0.015 Vol。分别在50℃下%。

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