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A Facile One Step Solution Route to Synthesize Cuprous Oxide Nanofluid

机译:一种简便的一步法合成氧化亚铜纳米流体的方法

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摘要

A cuprous oxide nanofluid stabilized by sodium lauryl sulfate, synthesized by using the one step method, has been reported. Nanofluids were synthesized by using a well‐controlled surfactant‐assisted solution phase synthesis. The method involved reduction of copper acetate by glucose in a mixture of water and ethylene glycol serving as the base fluid. The synthesized fluid was characterized by X‐ray and electron diffraction techniques, in addition, transmission and field emission microscopic techniques and Fourier transform infra red spectroscopic analysis was undertaken. The rheological property, as well as the thermal conductivity of the fluid, were measured. The variation of reaction parameters considerably affected the size of the particles as well as the reaction rate. The uniform dispersion of the particles in the base fluid led to a stability period of three months under stationary state, augmenting the thermal conductivity of the nanofluid. The method is found to be simple, reliable and fast for the synthesis of Newtonian nanofluids containing cuprous oxide nanoparticles.
机译:已经报道了通过一步法合成的由月桂基硫酸钠稳定的氧化亚铜纳米流体。通过使用良好控制的表面活性剂辅助溶液相合成法来合成纳米流体。该方法包括在水和作为基础流体的乙二醇的混合物中通过葡萄糖还原乙酸铜。通过X射线和电子衍射技术对合成流体进行了表征,此外,还进行了透射和场发射显微镜技术以及傅里叶变换红外光谱分析。测量了流变性质以及流体的热导率。反应参数的变化极大地影响了颗粒的大小以及反应速率。颗粒在基础流体中的均匀分散导致在固定状态下三个月的稳定期,从而增加了纳米流体的导热性。发现该方法简单,可靠且快速,用于合成包含氧化亚铜纳米颗粒的牛顿纳米流体。

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