Siddique Amna, Nawaz Hifza, Razzaque Shumaila, Tabasum Anila, Gong Hugh, Razzaq Humaira, Umar Muhammad
Department of Chemistry, University of Wah, Quaid Avenue, Wah 47040, Pakistan.
Department of Materials, University of Manchester, Oxford Road, Manchester M13 9PL, UK.
Polymers (Basel). 2024 Mar 4;16(5):699. doi: 10.3390/polym16050699.
Among the various water purification techniques, advancements in membrane technology, with better fabrication and analysis, are receiving the most research attention. The piezo-catalytic degradation of water pollutants is an emerging area of research in water purification technology. This review article focuses on piezoelectric polyvinylidene difluoride (PVDF) polymer-based membranes and their nanocomposites for textile wastewater remediation. At the beginning of this article, the classification of piezoelectric materials is discussed. Among the various membrane-forming polymers, PVDF is a piezoelectric polymer discussed in detail due to its exceptional piezoelectric properties. Polyvinylidene difluoride can show excellent piezoelectric properties in the beta phase. Therefore, various methods of β-phase enhancement within the PVDF polymer and various factors that have a critical impact on its piezo-catalytic activity are briefly explained. This review article also highlights the major aspects of piezoelectric membranes in the context of dye degradation and a net-zero approach. The β-phase of the PVDF piezoelectric material generates an electron-hole pair through external vibrations. The possibility of piezo-catalytic dye degradation via mechanical vibrations and the subsequent capture of the resulting CO and H gases open up the possibility of achieving the net-zero goal.
在各种水净化技术中,随着制造和分析技术的改进,膜技术正受到最多的研究关注。水污染物的压电催化降解是水净化技术中一个新兴的研究领域。这篇综述文章重点关注基于聚偏二氟乙烯(PVDF)聚合物的压电膜及其纳米复合材料在纺织废水处理中的应用。在本文开头,讨论了压电材料的分类。在各种成膜聚合物中,PVDF作为一种压电聚合物因其优异的压电性能而被详细讨论。聚偏二氟乙烯在β相时可表现出优异的压电性能。因此,简要解释了PVDF聚合物中β相增强的各种方法以及对其压电催化活性有关键影响的各种因素。这篇综述文章还强调了压电膜在染料降解和净零方法方面的主要方面。PVDF压电材料的β相通过外部振动产生电子 - 空穴对。通过机械振动实现压电催化染料降解以及随后捕获产生的CO和H气体,为实现净零目标开辟了可能性。