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通过纳秒激光烧蚀和氟代氧硅烷改性在钨表面制备耐用超疏水涂层

Durable Superhydrophobic Coatings on Tungsten Surface by Nanosecond Laser Ablation and Fluorooxysilane Modification.

作者信息

Kuzina Ekaterina A, Emelyanenko Kirill A, Teplonogova Maria A, Emelyanenko Alexandre M, Boinovich Ludmila B

机构信息

A.N. Frumkin Institute of Physical Chemistry and Electrochemistry, Leninsky prospect 31 bldg. 4, 119071 Moscow, Russia.

N.S. Kurnakov Institute of General and Inorganic Chemistry, Leninsky prospect 31, 119071 Moscow, Russia.

出版信息

Materials (Basel). 2022 Dec 26;16(1):196. doi: 10.3390/ma16010196.

Abstract

Tungsten is an attractive material for a variety of applications, from constructions in high-temperature vacuum furnaces to nontoxic shields for nuclear medicine, because of its distinctive properties, such as high thermal conductivity, high melting point, high hardness and high density. At the same time, the areas of the applicability of tungsten, to a large extent, are affected by the formation of surface oxides, which not only strongly reduce the mechanical properties, but are also prone to easily interacting with water. To alleviate this shortcoming, a series of superhydrophobic coatings for the tungsten surface was elaborated using the method of nanosecond laser treatment followed by chemical vapor deposition of hydrophobic fluorooxysilane molecules. It is shown that the durability of the fabricated coatings significantly depends on surface morphology and composition, which in turn can be effectively controlled by adjusting the parameters of the laser treatment. The coating prepared with optimized parameters had a contact angle of 172.1 ± 0.5° and roll-off angle of 1.5 ± 0.4°, and preserved their high superhydrophobic properties after being subjected to oscillated sand abrasion for 10 h, continuous contact with water droplets for more than 50 h, and to several cycles of the falling sand test.

摘要

由于钨具有诸如高导热性、高熔点、高硬度和高密度等独特性能,它在从高温真空炉的构造到核医学的无毒防护等各种应用中都是一种有吸引力的材料。同时,钨的适用领域在很大程度上受到表面氧化物形成的影响,这些氧化物不仅会大幅降低机械性能,还容易与水发生相互作用。为了缓解这一缺点,采用纳秒激光处理方法,随后进行疏水性氟代氧硅烷分子的化学气相沉积,制备了一系列用于钨表面的超疏水涂层。结果表明,所制备涂层的耐久性显著取决于表面形态和组成,而这又可以通过调整激光处理参数来有效控制。用优化参数制备的涂层接触角为172.1±0.5°,滚落角为1.5±0.4°,在经过10小时的振荡砂磨、与水滴连续接触超过50小时以及多次落砂试验循环后,仍保持其高超疏水性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/114a/9821619/a9f0f3a2a7f6/materials-16-00196-g001.jpg

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