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Branched ZnO Wire Structures for Water Collection Inspired by Cacti

机译:仙人掌启发集水的分支ZnO线结构

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摘要

In this work, motivated by an approach used in a cactus to collect fog, we have developed an artificial water-collection structure. This structure includes a large ZnO wire and an array of small ZnO wires that are branched on the large wire. All these wires have conical shapes, whose diameters gradually increase from the tip to the root of a wire. Accordingly, a water drop that is condensed on the tip of each wire is driven to the root by a capillary force induced by this diameter gradient. The lengths of stem and branched wires in the synthesized structures are in the orders of 1 mm and 100 μm, respectively. These dimensions are, respectively, comparable to and larger than their counterparts in the case of a cactus. Two groups of tests were conducted at relative humidity of 100% to compare the amounts of water collected by artificial and cactus structures within specific time durations of 2 and 35 s, respectively. The amount of water collected by either type of structures was in the order of 0.01 μh. However, on average, what has been collected by the artificial structures was 1.4— 5.0 times more than that harvested by the cactus ones. We further examined the mechanism that a cactus used to absorb a collected water drop into its stem. On the basis of the gained understanding, we developed a setup to successfully collect about 6 μt, of water within 30 min.
机译:在这项工作中,受仙人掌中用于收集雾气的方法的启发,我们开发了一种人工集水结构。该结构包括一条大的ZnO导线和在该大的导线上分支的一系列小ZnO导线。所有这些导线均具有圆锥形状,其直径从导线的尖端到根部逐渐增大。因此,在该直径梯度上产生的毛细作用力将凝结在每根线的尖端上的水滴驱动到根部。合成结构中的茎和分支线的长度分别为1mm和100μm的数量级。在仙人掌的情况下,这些尺寸分别相当于或大于它们的对应尺寸。在100%的相对湿度下进行了两组测试,以比较分别在2和35 s的特定持续时间内通过人工和仙人掌结构收集的水量。任一类型的结构收集的水量约为0.01μh。但是,平均而言,人工结构收集的是仙人掌收集的1.4到5.0倍。我们进一步检查了仙人掌用来吸收收集的水滴到其茎中的机理。基于所获得的理解,我们开发了一种在30分钟内成功收集约6μt水的装置。

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