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首页> 外文期刊>Journal of Cleaner Production >'Soapy water' transformation of the 'condenser' with self-cleaning ability and antibacterial activity
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'Soapy water' transformation of the 'condenser' with self-cleaning ability and antibacterial activity

机译:“肥皂水”随着自清洁能力和抗菌活性的“冷凝器”的转变

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摘要

Superhydrophobic materials exhibit diverse application potential in various fields due to their excellent self-cleaning properties. However, it is still challenging to prepare bionic superhydrophobic materials employing the green methods. In this study, the "condenser" (simulated by a red copper spiral tube) with excellent self-cleaning properties and antibacterial activity has been prepared by a simple one-step "soapy water" immersion process without introducing any other reagents. The results demonstrate that the Cu[CH3(CH2)(10)COO](2) lamellar nanostructures are formed on the surface of "condenser" owing to the oxidation of copper upon immersion in the sodium laurate aqueous solution. The as-formed nanostructures exhibit excellent self-cleaning performance and can significantly inhibit the growth and proliferation of Escherichia coli and Staphylococcus aureus, which is significant for the upgradation of the safety and comfort features of the new generation air-conditioners. Moreover, the ruptured superhydrophobic coating on the copper tube can be effectively restored by a facile re-soaking process. Therefore, the present approach, with simple one-step solution-immersion process, low cost, short immersion period, environmental friendliness and optimal applicability to a variety of metal structures of different shapes, represents a promising strategy for fabricating the low-cost superhydrophobic surfaces applicable to the condenser and heat transfer systems, thereby, promoting the development of the self-cleaning and antibacterial smart devices. (C) 2020 Elsevier Ltd. All rights reserved.
机译:由于其出色的自清洁性能,超疏水材料在各个领域表现出各种领域的不同应用势。然而,制备采用绿色方法的仿生超疏水材料仍然挑战。在该研究中,通过简单的一步“肥皂水”浸入过程,制备了具有优异的自清洁性能和抗菌活性的“冷凝器”(通过红色铜管模拟),而不会引入任何其他试剂。结果表明,由于铜在浸泡在月桂酸钠水溶液中,Cu [CH3(CH2)(10)COO](2)在“冷凝器”的表面上形成了层状纳米结构。形成的纳米结构具有出色的自清洁性能,可以显着抑制大肠杆菌和金黄色葡萄球菌的生长和增殖,这对于新一代空调的安全性和舒适性的升级是显着的。此外,可以通过容易的重新浸泡工艺有效地恢复铜管上的破裂超疏水涂层。因此,本方法,具有简单的一步溶液浸渍工艺,低成本,短浸入期,环境友好性和对不同形状的各种金属结构的最佳适用性,代表了制造低成本超疏水表面的有希望的策略由此适用于冷凝器和传热系统,促进自清洁和抗菌智能装置的发展。 (c)2020 elestvier有限公司保留所有权利。

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