作者
Kyle L. Wilke, Banafsheh Barabadi, Zhengmao Lu, TieJun Zhang, Evelyn N. Wang
发表日期
2017/10/23
期刊
Applied Physics Letters
卷号
111
期号
17
页码范围
171603
出版商
AIP Publishing
简介
The performance and lifetime of advanced electronics are often dictated by the ability to dissipate heat generated within the device. Thin film evaporation from nanoporous membranes is a promising thermal management approach, which reduces the thermal transport distance across the liquid film while also providing passive capillary pumping of liquid to the evaporating interface. In this work, we investigated the dependence of thin film evaporation from nanoporous membranes on a variety of geometric parameters. Anodic aluminum oxide membranes were used as experimental templates, where pore radii of 28–75 nm, porosities of 0.1–0.35, and meniscus locations down to 1 μm within the pore were tested. We demonstrated different heat transfer regimes and observed more than an order of magnitude increase in dissipated heat flux by operating in the pore-level evaporation regime. The pore diameter had little …
引用总数
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学术搜索中的文章
KL Wilke, B Barabadi, Z Lu, TJ Zhang, EN Wang - Applied Physics Letters, 2017