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Updated: Sep 24, 2025

Electrophoretic Crystallization of Ultrathin High-performance Metal-organic Framework Membranes
Published on: August 16, 2018
A flexible Ti3C2T (MXene)/paper membrane for efficient oil/water separation
Jayaprakash Saththasivam1, Kui Wang1,2, Wubulikasimu Yiming3
1Qatar Environment and Energy Research Institute, Hamad Bin Khalifa University, Qatar Foundation PO Box 34110 Doha Qatar zliu@hbku.edu.qa kmahmoud@hbku.edu.qa +974 44541528.
Abstract:
The scalable fabrication of flexible membranes for efficient oil/water separation is in high demand but still significantly underdeveloped. Here, we present a flexible membrane using Ti3C2T (MXene) as the functional layer on conventional print paper as the substrate. With a simple coating process using MXene ink, we developed a highly hydrophilic and oleophobic membrane with an underwater oil contact angle of 137°. Such a simple membrane shows outstanding flexibility and robustness, and demonstrates a facile approach for membrane scale-up using MXene ink on low-cost print paper. The membrane shows high separation efficiency for oil/water emulsions, of over 99%, and a high water permeation flux of over 450 L per m2 per h per bar. We demonstrate the excellent anti-fouling property of this membrane by cleaning the membranes without chemicals. These low-cost, highly efficient, anti-fouling membranes can provide new opportunities for industrial oil/water separation applications.
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