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Shape-controlled synthesis of silver nanostructures for high-thermal conductivity nanofluids

机译:高热导纳流体的形状控制的银纳米结构合成

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A nanofluid is a solid-liquid composite material consisting of a stable suspension of nanometric particles in a conventional refrigerant liquid expected to exhibit enhanced heat transfer properties. Elemental silver (Ag) was selected in this research because of its high electrical and thermal conductivity that are likely to be dependent on the crystal size and shape at the nanoscale. Accordingly, we have synthesized highly monodisperse silver nanowires and nanocrystals by reducing silver nitrate solutions with ethylene glycol in presence of polyvinylpyrrolidone, (PVP). The shape-control in the silver nanostructures was achieved by a proper selection of the type and level of chloride salts, e.g. KCI and CaCl_2, and specific PVP/Ag mole ratios in starting solutions. The development of the metal phase was confirmed by X-ray diffractometry. Transmission electron microscopy analyses evidenced the formation of silver nanowires exhibiting a very uniform thickness that could be tuned in the 40-130nm range. UV-vis measurements evidenced the plasmon peak at ~387nm and clear shoulders at ~357nm that are indicative of the formation of elongated nanostructures.
机译:纳米流体是由常规制冷剂液体中的纳米颗粒的稳定悬浮液组成的固液复合材料,该载体预期具有增强的传热性能。在本研究中选择了元素银(AG),因为其高电导率和导热率可能依赖于纳米级的晶体尺寸和形状。因此,通过在聚乙烯吡咯烷酮存在下将硝酸银溶液减少用乙二醇(PVP)来合成高度单分散的银纳米线和纳米晶。 The shape-control in the silver nanostructures was achieved by a proper selection of the type and level of chloride salts, e.g. KCI和CACL_2以及启动解决方案中的特定PVP / AG MOLE比率。通过X射线衍射测定法证实了金属相的发展。透射电子显微镜分析证明了呈现出非常均匀的厚度的银纳米线的形成,可在40-130纳米范围内进行调谐。 UV-VI-VI测量证明了〜387nm的等离子体峰,并且在〜357nm处清除肩部,其表示细长纳米结构的形成。

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