铜
烯类反应
氧化铜
氧化物
材料科学
化学
冶金
无机化学
有机化学
作者
A. Voronin,Yu. V. Fadeev,Fedor S. Ivanchenko,И. В. Немцев,С. В. Хартов
出处
期刊:Сибирский журнал науки и технологий
日期:2018-01-01
卷期号:19 (4): 660-667
被引量:1
标识
DOI:10.31772/2587-6066-2018-19-4-660-667
摘要
The paper presents the results of creating and researching the transparent heaters with enhanced performance characteristics.The heaters are based on a composite coating of a new type by contrast with classical solutions based on transparent conductive oxide films.Such a composite coating is copper micromesh obtained using a self-organized template, stabilized by a thin film of graphene oxide (GO).The micromesh coating is formed by magnetron sputtering of copper onto a template obtained as a result of self-organized cracking of a silica film.Then, a graphene oxide film protecting the micromesh coating from thermal and chemical degradation is applied to the micromesh coating by the spray-method.A composite coating with the surface resistance of 8.9 Ohm/sq is obtained with the transparency of 82.8 % at the wavelength of 550 nm.High uniformity of heating and stability of the composite coating are shown when operating under heating up to 97.2 °C for a long time (24 hours).The composite coating of the GO / Cu micromesh on a glass substrate 2 mm thick is characterized by the thermal resistance value of 134.2 °C•cm 2 •W -1 , while the ITO literature sample on an equivalent substrate is characterized by the thermal resistance of 94.04 °C•cm 2 •W -1 , which indicates higher heating efficiency at the same specific power dissipation.This fact opens up prospects for its use as an anti-icing coating in aerospace industry.
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