ملخص
We report electrically controlled membranes which become permeable when an electrical field is exerted on a droplet deposited on the membrane. Micro-porous polycarbonate membranes are obtained with the breath-figures assembly technique, using micro-scaled stainless steel gauzes as supports. The membranes demonstrate pronounced Cassie-Baxter wetting. Air cushions trapped by the droplet prevent water penetration through the membrane. We demonstrate two possibilities for controlling the permeability of the membrane, namely contact and non-contact scenarios. When an electrical field is exerted on a droplet deposited on the membrane, the triple-line is de-pinned and the wetting transition occurs in the non-contact scheme. Thus, the membrane becomes permeable. The contact scheme of the permeability control is based on the electrowetting phenomenon.
| اللغة الأصلية | الإنجليزيّة |
|---|---|
| رقم المقال | 3028 |
| دورية | Scientific Reports |
| مستوى الصوت | 3 |
| المعرِّفات الرقمية للأشياء | |
| حالة النشر | نُشِر - 23 أكتوبر 2013 |
بصمة
أدرس بدقة موضوعات البحث “Electrically controlled membranes exploiting cassie-wenzel wetting transitions'. فهما يشكلان معًا بصمة فريدة.قم بذكر هذا
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