Self-Assembled Hydrophobic/Hydrophilic Porphyrin-Ti3C2TMXene Janus Membrane for Dual-Functional Enabled Photothermal Desalination

Research output: Journal Publications and Reviews (RGC: 21, 22, 62)21_Publication in refereed journalpeer-review

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Detail(s)

Original languageEnglish
Pages (from-to)3762-3770
Journal / PublicationACS Applied Materials and Interfaces
Volume13
Issue number3
Online published19 Jan 2021
Publication statusPublished - 27 Jan 2021

Abstract

Photothermal desalination is a promising approach for seawater purification by harvesting solar energy. Titanium carbide (Ti3C2Tx 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-Ti3C2Tx 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.

Research Area(s)

  • Janus structure, membrane, MXene, photothermal, seawater desalination

Citation Format(s)

Self-Assembled Hydrophobic/Hydrophilic Porphyrin-Ti3C2TMXene Janus Membrane for Dual-Functional Enabled Photothermal Desalination. / Zhang, Baoping; Gu, Qinfen; Wang, Cheng et al.
In: ACS Applied Materials and Interfaces, Vol. 13, No. 3, 27.01.2021, p. 3762-3770.

Research output: Journal Publications and Reviews (RGC: 21, 22, 62)21_Publication in refereed journalpeer-review