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Tunable rose petal effect of cobalt coated zinc surfaces via a facile electroless galvanic deposition process

机译:钴化无电镀电流沉积工艺可调谐玫瑰花瓣效应镀锌锌表面

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摘要

The rose petal effect (large apparent contact angles accompanied by high affinity to water) has greatly inspired researchers recently. In this paper, the rose-petal surfaces with tunable high water adhesion have been prepared successfully via a facile electroless galvanic deposition process as well as the subsequent modification with stearic acid on zinc substrates. We have regulated the concentration of CoSO4 solution in the process of electroless galvanic deposition to control the surface topography. After being modified with stearic acid, the as-prepared cobalt coated films showed similar apparent contact angles larger than 150 degrees but contrast high water adhesion. To the best of our knowledge, the fabrication of rose petal surfaces with tunable water adhesion is still scarce. The largest water droplet volumes suspended on the tunable rose petal surfaces were 8, 24 and 28L, respectively. In addition, based on the different water adhesion on the rose petal surfaces, the selective transportation of microdroplets with different volumes has been demonstrated. We believe that these tunable adhesive rose petal surfaces would have great potential in the droplet-based microreactors.
机译:玫瑰花瓣效应(伴随着高亲和力的大明显接触角)最近有很大的启发研究人员。在本文中,通过容易无电镀电流沉积工艺成功制备了可调谐高水附着的玫瑰花瓣表面,以及随后用锌底物上的硬脂酸改性。我们在化学电流沉积过程中调节了COSO4溶液的浓度,以控制表面形貌。在用硬脂酸改性后,制备的钴涂层膜显示出具有大于150度的类似明显的接触角,但对比水粘附性鲜明对比。据我们所知,玫瑰花瓣表面具有可调水粘性的玫瑰花瓣表面仍然稀缺。悬浮在可调玫瑰花瓣表面上的最大水滴体积分别为8,24和28L。另外,基于玫瑰花瓣表面上的不同水粘附,已经证明了具有不同体积的微量滴的选择性运输。我们认为,这些可调粘合剂玫瑰花瓣表面在基于液滴的微反应器中具有很大的潜力。

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