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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Fabrication of Functionalized Copper Compound Hierarchical Structure with Bionic Superhydrophobic Properties
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Fabrication of Functionalized Copper Compound Hierarchical Structure with Bionic Superhydrophobic Properties

机译:具有仿生超疏水特性的功能化铜化合物分层结构的制备

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摘要

Hierarchical structure of flower-like CuO standing on Cu(OH)2 nanorod arrays, similar to that of a lotus leaf, was directly fabricated on the surface of copper foils by a simple one-step solution-immersion process. It was found that the diameter of the nanorods ranges from 100 to 500 nm, and the length of the rods is about tens of micrometers. Synchronously, flower-like CuO with a diameter of about 3—5 μm was also deposited from the bulk solution during the growth of nanorod arrays. The wettability of the surface with hierarchical structure was changed from surperhydrophilicity to superhydrophobicity by chemical modification with stearic acid (STA) or 1H,1H2H,2H-perfluorodecyltriefhoxysilane (PDES). The static contact angles (CAs) for water on both of the modified surfaces were larger than 160°, which was closely related to the chemical modification and hierarchical structure. Compared with the STA-modified surface, the PDES-modified surface had a lower CA hysteresis (CAH) and adhesion for water droplets. Furthermore, the surfaces retained good superhydrophobic stability in long-term storage as well, which should be critical to the application of Cu materials in engineering.
机译:通过简单的一步溶液浸渍法,就可以在铜箔的表面上直接制成类似于荷叶的直立在Cu(OH)2纳米棒阵列上的花状CuO的分层结构。发现纳米棒的直径在100至500nm的范围内,并且棒的长度为约数十微米。同时,在纳米棒阵列的生长过程中,还从本体溶液中沉积了直径约为3-5μm的花状CuO。通过使用硬脂酸(STA)或1H,1H2H,2H-全氟癸基三乙氧基硅烷(PDES)进行化学改性,将具有分层结构的表面的润湿性从超亲水性更改为超疏水性。水在两个改性表面上的静态接触角(CAs)均大于160°,这与化学改性和分层结构密切相关。与STA改性的表面相比,PDES改性的表面具有较低的CA滞后性(CAH)和对水滴的附着力。此外,该表面在长期存储中也保持了良好的超疏水稳定性,这对于将铜材料应用于工程中至关重要。

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