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Microfluidic valves based on TiO2 coating with tunable surface wettability between super hydrophilic and super hydrophobic

机译:基于TiO 2 涂层的微流体阀,在超亲水和超疏水之间具有可调节的表面润湿性

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A new simple microfluidic valve, which utilizes titanium dioxide (TiO2) nanoparticles tunable surface wettability between super hydrophilic and super hydrophobic to switch the valve on/off, is presented in this paper. TiO2 nanoparticals are coated using liquid phase deposition (LPD) technique in the selected areas of silicon microchannels. After coating, a fresh TiO2 film is super hydrophilic, and liquid can flow over the TiO2 coated channel easily due to the capillary (valve open). After baking the channel covered with a PDMS film at 200 °C, the contact angle of the TiO2 film increases to 154 degree quickly in 10 minutes, resulting in a stop of liquid flow at the TiO2 film (valve closed). When the TiO2 film is exposed to a UV illumination, the film becomes super hydrophilic, and the valve is open again. The switch duration of the microfluidic valve between on and off status is less than 15 minutes. This type of microfluidic valve provides potential applications to microfluidic systems, especially the lab-on-chip systems.
机译:本文提出了一种新的简单的微流体阀,该阀利用二氧化钛(TiO 2 )纳米粒子在超亲水和超疏水之间可调的表面润湿性来打开/关闭阀门。使用液相沉积(LPD)技术将TiO 2 纳米颗粒涂覆在硅微通道的选定区域中。涂覆后,新鲜的Ti​​O 2 膜具有超强的亲水性,由于毛细管(阀门打开),液体很容易流过TiO 2 涂覆的通道。在200°C下烘烤覆盖有PDMS膜的通道后,TiO 2 膜的接触角在10分钟内迅速增加到154度,导致TiO 处的液体​​停止流动> 2 膜(阀门关闭)。当TiO 2 薄膜暴露于紫外线照射下时,薄膜变得超亲水,阀门再次打开。微流体阀在打开和关闭状态之间的切换持续时间少于15分钟。这种类型的微流体阀为微流体系统,尤其是芯片实验室系统提供了潜在的应用。

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