Behera Diptirani, Priyadarshini Priyanka, Parida Kulamani
Centre for Nanoscience and Nanotechnology, Siksha 'O' Anusnadhan (Deemed to be University), Bhubaneswar, Odisha, 751030, India.
Dalton Trans. 2025 Feb 11;54(7):2681-2708. doi: 10.1039/d4dt02662d.
In the face of escalating environmental challenges such as fossil fuel dependence and water pollution, innovative solutions are essential for sustainable development. In this regard, zeolitic imidazolate frameworks (ZIFs), specifically ZIF-8, act as promising photocatalysts for environmental remediation and renewable energy applications. ZIF-8, a subclass of metal-organic frameworks (MOFs), is renowned for its large specific surface area, high porosity, rapid electron transfer ability, abundant functionalities, ease of designing, controllable properties, and remarkable chemical and thermal stability. However, its application as a standalone photocatalyst is limited by issues such as particle aggregation, poor water stability, and insufficient visible light absorption. By integrating ZIF-8 with various photoactive materials to form composite catalysts, these drawbacks can be mitigated, leading to enhanced photocatalytic efficiency. The review discusses the synthesis, properties, and applications of ZIF-8-based photocatalysts in light-driven H evolution, HO evolution, CO reduction, and dye and drug degradation. It also highlights the challenges and future research directions in developing cost-effective, scalable, and environmentally friendly ZIF-8 composites for industrial applications. The potential of ZIF-8 composites to contribute to sustainable global energy solutions and environmental cleanup is significant, yet further exploration is required to harness their capabilities thoroughly.
面对诸如对化石燃料的依赖和水污染等不断升级的环境挑战,创新解决方案对于可持续发展至关重要。在这方面,沸石咪唑酯骨架材料(ZIFs),特别是ZIF-8,作为用于环境修复和可再生能源应用的有前景的光催化剂。ZIF-8是金属有机骨架材料(MOFs)的一个子类,以其大比表面积、高孔隙率、快速电子转移能力、丰富的官能团、易于设计、可控的性质以及卓越的化学和热稳定性而闻名。然而,其作为独立光催化剂的应用受到诸如颗粒聚集、水稳定性差和可见光吸收不足等问题的限制。通过将ZIF-8与各种光活性材料整合形成复合催化剂,可以减轻这些缺点,从而提高光催化效率。该综述讨论了基于ZIF-8的光催化剂在光驱动析氢、析氧、二氧化碳还原以及染料和药物降解方面的合成、性质和应用。它还强调了在开发用于工业应用的具有成本效益、可扩展且环境友好的ZIF-8复合材料方面的挑战和未来研究方向。ZIF-8复合材料为全球可持续能源解决方案和环境清理做出贡献的潜力巨大,但需要进一步探索以充分发挥其能力。