首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Electrowetting on dielectric (EWOD) properties of Teflon-coated electrosprayed silica layers in air and oil media and the influence of electric leakage
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Electrowetting on dielectric (EWOD) properties of Teflon-coated electrosprayed silica layers in air and oil media and the influence of electric leakage

机译:在空气和油介质中的Teflon涂层电喷雾二氧化硅层的电介质(EWOD)性能和电漏电的影响

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This paper reports the electrowetting (EW) properties of silica layers. Rough silica layers were deposited on a Si substrate by the electrospraying of SiO2 for different times (10 s-10 min) and subsequently Teflon coated with different thicknesses (35 and 625 nm). The surface roughness measurements revealed an increase in roughness with increasing electrospraying time. A thinner (35 nm) Teflon-coated layer showed better EW properties and was selected for subsequent studies. By applying different voltages (0-200 V) to the thinner Teflon-coated rough SiO2 layers, the water contact angle (WCA) decreased continuously and the SiO2 layer that had been electrosprayed for 20 s showed the maximum decrease in WCA in air, whereas the wetting behavior changed from hydrophobic to hydrophilic under a voltage of 200 V. In addition, the EW behavior of the SiO2 layers in oil ambient was studied and it was found that under the maximum applied voltage (150 V), both 20 and 30 s electrosprayed layers exhibited hydrophilic behavior. These results showed that electric leaking currents, which are largely ignored, can be used to tailor the relationship between the WCA and applied voltage: from a non-linear (V-2) to a linear (V) function. In particular, a decrease in the WCA equals the applied voltage normalized to the maximum (or breakdown) external voltage. This study opens a new research field in materials chemistry with regards to the coupling of electrochemical, thermodynamic and mechanical interactions.
机译:本文报道了二氧化硅层的电润湿(EW)性能。通过SiO 2的电喷雾器对不同时间(10s-10min)的电喷雾沉积粗二氧化硅层,然后用不同厚度(35和625nm)涂覆的Teflon。表面粗糙度测量显示粗糙度随着电喷雾时间的增加而增加。较薄的(35nm)Teflon涂层层显示出更好的EW性质,并选择用于后续研究。通过将不同的电压(0-200V)施加到较薄的Teflon涂覆的粗SiO 2层,水接触角(WCA)连续降低,并且电喷雾器20 s的SiO 2层显示出WCA在空气中的最大降低,而在200V的电压下从疏水到亲水改变的润湿行为。此外,研究了油环境中的SiO 2层的EW行为,发现在最大施加的电压(150 V)下,20和30秒。电喷雾层表现出亲水性行为。这些结果表明,在很大程度上被忽略的电流可用于根据线性(V-2)到线性(V)函数来定制WCA和施加电压之间的关系。特别地,WCA的减少等于施加的电压归一化为最大(或故障)外部电压。本研究在电化学,热力学和机械相互作用的偶联方面开启了材料化学的新研究领域。

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