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Visibility and oxidation stability of hybrid-type copper mesh electrodes with combined nickel-carbon nanotube coating

机译:含镍碳纳米管涂层混合型铜网电极的可视性和氧化稳定性

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Hybrid-type transparent conductive electrodes (TCEs) were fabricated by coating copper (Cu) meshes with carbon nanotube (CNT) via electrophoretic deposition, and with nickel (Ni) via electroplating. For the fabricated electrodes, the effects of the coating with CNT and Ni on their transmittance and reflectance in the visible-light range, electrical sheet resistance, and chromatic parameters (e.g., redness and yellowness) were characterized. Also, an oxidation stability test was performed by exposing the electrodes to air for 20 d at 85 degrees C and 85% temperature and humidity conditions, respectively. It was discovered that the CNT coating considerably reduced the reflectance of the Cu meshes, and that the Ni coating effectively protected the Cu meshes against oxidation. Furthermore, after the coating with CNT, both the redness and yellowness of the Cu mesh regardless of the Ni coating approached almost zero, indicating a natural color. The experiment results confirmed that the hybrid-type Cu meshes with combined Ni-CNT coating improved characteristics in terms of reflectance, sheet resistance, oxidation stability, and color, superior to those of the primitive Cu mesh, and also simultaneously satisfied most of the requirements for TCEs.
机译:通过电泳沉积和镍(Ni)通过电镀通过电镀涂覆铜(Cu)网,并通过电镀来制造杂交型透明导电电极(TCE)通过碳纳米管(CNT)。对于制造的电极,表征涂层与CNT和Ni的透射率和反射率的特征在于,表征了可见光范围,电薄层电阻和彩色参数(例如,发红和黄色)的透射率和反射率。而且,通过将电极暴露于85℃和85%的温度和湿度条件,通过将电极暴露于空气来进行氧化稳定性试验。发现CNT涂层显着降低了Cu网状物的反射率,并且Ni涂层有效地保护了Cu网孔的氧化物。此外,在用CNT涂层之后,Cu筛网的发红和黄色无论Ni涂层都接近几乎为零,表示自然色。实验结果证实,杂交型Cu网格在反射率,薄层电阻,氧化稳定性和颜色方面具有改善的特性,优于原始Cu网格的颜色,同时满足大部分要求针对表征。

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