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Enhanced Evaporation Strength through Fast Water Permeation in Graphene-Oxide Deposition

机译:通过石墨烯-氧化物沉积中快速的水渗透增强的蒸发强度

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摘要

The unique characteristic of fast water permeation in laminated graphene oxide (GO) sheets has facilitated the development of ultrathin and ultrafast nanofiltration membranes. Here we report the application of fast water permeation property of immersed GO deposition for enhancing the performance of a GO/water nanofluid charged two-phase closed thermosyphon (TPCT). By benchmarking its performance against a silver oxide/water nanofluid charged TPCT, the enhancement of evaporation strength is found to be essentially attributed to the fast water permeation property of GO deposition instead of the enhanced surface wettability of the deposited layer. The expansion of interlayer distance between the graphitic planes of GO deposited layer enables intercalation of bilayer water for fast water permeation. The capillary force attributed to the frictionless interaction between the atomically smooth, hydrophobic carbon structures and the well-ordered hydrogen bonds of water molecules is sufficiently strong to overcome the gravitational force. As a result, a thin water film is formed on the GO deposited layers, inducing filmwise evaporation which is more effective than its interfacial counterpart, appreciably enhanced the overall performance of TPCT. This study paves the way for a promising start of employing the fast water permeation property of GO in thermal applications.
机译:叠层氧化石墨烯(GO)片中快速渗透水的独特特性促进了超薄和超快纳滤膜的开发。在这里,我们报告了沉浸式GO沉积的快速透水性能在增强GO /水纳米流体带电两相封闭热虹吸管(TPCT)性能方面的应用。通过将其性能与氧化银/水纳米流体带电荷的TPCT进行比较,发现蒸发强度的提高基本上归因于GO沉积的快速透水性能,而不是沉积层的表面可湿性增强。 GO沉积层的石墨平面之间的层间距离的扩展使得双层水能够插入以实现快速的水渗透。归因于原子光滑的疏水碳结构与水分子的有序氢键之间无摩擦相互作用的毛细作用力足以克服重力。结果,在GO沉积层上形成了薄的水膜,引起了比其界面对应物更有效的膜状蒸发,从而显着提高了TPCT的整体性能。这项研究为在热应用中采用GO的快速透水性能铺平了道路。

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