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首页> 外文期刊>Applied Surface Science >Laser nature dependence on enhancement of optical and thermal properties of copper oxide nanofluids
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Laser nature dependence on enhancement of optical and thermal properties of copper oxide nanofluids

机译:激光自然依赖于增强氧化铜氧化铜氧化铜的光学性质

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The miniaturization of electronic devices and increasing industrial energy consumption demands the efficient cooling systems/cooling fluids. The state of the art refrigerants known as nanofluids are the promising coolant fluids. The nanofluids are expected to exhibit high thermal conductivity depending upon the nature of fluid, dispersed nanoparticles and stability of the dispersion. In this study, Copper and Copper oxide nanofluids (Cu/CuO-NFs) are synthesized via Laser ablation synthesis in Liquid (LAL) method. A Continuous Wave (CW) laser and a nanosecond pulsed laser were used for synthesis of Cu/CuO-NFs in deionized water; CW laser was employed first time for synthesis of Cu/CuO-NFs. Highly pure and crystalline copper oxide nanoparticles were prepared with average size of 25 nm and 10 nm exhibiting 29% and 41% enhancement in thermal conductivity synthesized by CW and pulsed laser, respectively. Moreover, the synthesized Cu/CuO-NPs exhibited the broad band gap as compared to the bulk material. Therefore, the synthesized nanofluids are the potential candidate for efficient heat transfer application.
机译:电子器件的小型化和增加的工业能耗要求有效的冷却系统/冷却液。被称为纳米流体的艺术制冷剂的状态是有前途的冷却剂流体。预期纳米流体预计根据流体的性质,分散的纳米颗粒和分散体的稳定性表现出高导热率。在该研究中,通过液体(LAL)方法中的激光烧蚀合成合成铜和氧化铜氧化铜纳米流体(Cu / CuO-NFS)。连续波(CW)激光器和纳秒脉冲激光用于在去离子水中合成Cu / CuO-NFS; CW激光首次使用用于合成Cu / CuO-NFS的时间。高纯净和结晶的氧化铜氧化物纳米颗粒,平均尺寸为25nm和10nm,分别具有CW和脉冲激光合成的导热率的29%和41%增强。此外,与散装材料相比,合成的Cu / CuO-NPS表现出宽带隙。因此,合成的纳米流体是有效传热应用的潜在候选者。

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