首页> 外文期刊>Beilstein Journal of Nanotechnology >Novel reversibly switchable wettability of superhydrophobic–superhydrophilic surfaces induced by charge injection and heating
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Novel reversibly switchable wettability of superhydrophobic–superhydrophilic surfaces induced by charge injection and heating

机译:电荷注入和加热引起的超疏水-超亲水表面的新型可逆可切换润湿性

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Reversibly switching wettability between superhydrophobicity and superhydrophilicity has attracted widespread interest because of its important applications. In this work, we propose a reversible superhydrophobic–superhydrophilic conversion induced by charge injection and heating. Different from the conventional electrowetting phenomenon caused by the accumulation of solid–liquid interfacial charges, we discovered a phenomenon where charge injection and accumulation at the solid surface results in a sharp increase in wettability. The wettability of a sprayed SiOsub2/sub nanoparticle coating on a glass slide was shown to change from superhydrophobic to superhydrophilic by charge injection and heating, and the superhydrophobicity was restored by heating, verifying a reversible superhydrophobic–superhydrophilic conversion. The influence of voltage, temperature, and time on the coating wettability and its durability under reversible conversion have been studied.
机译:由于其重要的应用,在超疏水性和超亲水性之间可逆地切换润湿性引起了广泛的兴趣。在这项工作中,我们提出了由电荷注入和加热引起的可逆的超疏水-超亲水转化。与传统的由固液界面电荷积累引起的电润湿现象不同,我们发现了一种现象,其中电荷注入和在固体表面的积累导致润湿性急剧增加。载玻片上喷涂的SiO 2 纳米颗粒涂层的润湿性通过电荷注入和加热显示从超疏水性变为超亲水性,并且通过加热恢复了超疏水性,验证了可逆的超疏水-超亲水性转化。研究了电压,温度和时间对涂层可湿性及其在可逆转化条件下的耐久性的影响。

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