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Fabrication and Characterization of the Capillary Performance of Superhydrophilic Cu Micropost Arrays

机译:亲水铜微柱阵列的毛细管性能的制备与表征

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We report the fabrication of dense arrays of superhydrophilic Cu microposts at solid fractions as high as 58% and aspect ratios as high as four using electrochemical deposition and chemical oxidation techniques. Oxygen surface plasma treatments of photoresist molds and a precise control of the initial electrodeposition current are found to be critical in creating arrays of nearly defect-free Cu posts. The capillary performance of the micropost arrays is characterized using capillary rate of rise experiments and numerical simulations that account for the finite curvatures of liquid menisci. For the given wick morphology, the capillary performance generally decreases with increasing solid fraction and is enhanced by almost an order of magnitude when thin nanostructured copper oxide layers are formed on the post surface. The present work provides a useful starting point to achieve optimal balance between the capillary performance and the effective thermal conductivity of advanced wicks for micro heat pipes. $hfill$[2009-0288]
机译:我们报告了使用电化学沉积和化学氧化技术制造的致密阵列的超亲水性铜微柱,固相分数高达58%,纵横比高达4。发现光刻胶模具的氧表面等离子体处理和初始电沉积电流的精确控制对于创建几乎无缺陷的铜柱阵列至关重要。微柱阵列的毛细管性能使用毛细管上升速率实验和数值模拟来表征,这些实验考虑了液体弯液面的有限曲率。对于给定的灯芯形态,毛细管性能通常随固体分数的增加而降低,并且当在柱表面上形成薄的纳米结构的氧化铜层时,毛细管性能几乎提高了一个数量级。本工作提供了一个有用的起点,可以在微细热管的高级毛细作用的毛细管性能和有效导热率之间达到最佳平衡。 $ hfill $ [2009-0288]

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