Zhang Baoping, Gu Qinfen, Wang Cheng, Gao Qili, Guo Jiaxin, Wong Pak Wai, Liu Chain Tsuan, An Alicia Kyoungjin
School of Energy and Environment, City University of Hong Kong, Tat Chee Avenue, Kowloon, Hong Kong.
Australian Synchrotron (ANSTO), 800 Blackburn Road, Clayton 3168, Australia.
ACS Appl Mater Interfaces. 2021 Jan 27;13(3):3762-3770. doi: 10.1021/acsami.0c16054. Epub 2021 Jan 19.
Photothermal desalination is a promising approach for seawater purification by harvesting solar energy. Titanium carbide (TiCT MXene) membranes have been regarded as potential materials for photothermal desalination by virtue of their excellent light-to-heat conversion. However, achieving a well-balanced synergy between high evaporation rate and good salt resistance remains a significant challenge due to their limited solar absorption and inferior stability. Herein, we report a self-assembled flexible porphyrin-TiCT MXene Janus membrane (Janus PMX membrane) for dual-functional enabled photothermal desalination. The self-assembly of porphyrin on MXene not only effectively creates a favorable hydrophobic surface but also simultaneously enables efficient solar utilization. The significant interactions and charge redistribution between MXene and porphyrin lead to a stable hydrophobic/hydrophilic Janus structure with synergistically enhanced photothermal conversion. As a result, the Janus PMX membrane demonstrates highly efficient water pumping, heat localization, vapor generation, and salt resistance during photothermal desalination. This work presents an effective and facile strategy toward advancing a well-performing MXene membrane for efficient seawater desalination.
光热脱盐是一种通过收集太阳能来净化海水的很有前景的方法。碳化钛(TiCT MXene)膜因其优异的光热转换性能而被视为光热脱盐的潜在材料。然而,由于其有限的太阳能吸收和较差的稳定性,在高蒸发速率和良好耐盐性之间实现良好的协同作用仍然是一个重大挑战。在此,我们报道了一种用于双功能光热脱盐的自组装柔性卟啉-TiCT MXene双面膜(双面PMX膜)。卟啉在MXene上的自组装不仅有效地创造了一个有利的疏水表面,同时还能实现高效的太阳能利用。MXene和卟啉之间的显著相互作用和电荷重新分布导致了一种稳定的疏水/亲水双面结构,其光热转换协同增强。结果,双面PMX膜在光热脱盐过程中表现出高效的抽水、热定位、蒸汽产生和耐盐性。这项工作提出了一种有效且简便的策略,以推进用于高效海水淡化的高性能MXene膜。