Department of Chemistry, University of Buner, Buner, KP, Pakistan.
School of Chemical Sciences, Universiti Sains Malaysia, 11800, Penang, Malaysia.
Environ Sci Pollut Res Int. 2022 Jun;29(27):40403-40414. doi: 10.1007/s11356-022-19703-z. Epub 2022 Mar 26.
Ceramics-based filter for water treatment is an ancient technology to procure potable water at the household level. The traditional clay pots (vessels or hollow cylindrical container) have been used since long in the developing countries. The ceramic material (CaCuTiO or CCTO) is a hetero-junction of titanium oxide, a well-known UV-active photocatalyst, and visible light absorbing CuO materials. This hetero-junction is able to overcome the limitations such as high bandgap, poor stability, low efficiency, and high photo-generated charge (e/h) recombination rate, associated with the other commonly used metal oxide semiconductor photocatalysts. Moreover, the low-cost, viable and facile synthesis routes for CCTO triggered its potential applications in photoelectrochemical and photocatalytic processes. This review will elaborate on the available literature demonstrating the visible light activity of CCTO photocatalysts in water treatment technologies. Furthermore, the mechanism of photocatalysis and synthesis routes are presented in this work for broader impact of the CCTO potential applications. The extended porous character and excellent surface texture have made the ceramic materials as an ideal choice to combat the bacteria, pathogens and turbidity in aqueous medium at household level. Specifically, the controlled size and shape make the CaCuTiO (CCTO) an excellent visible light-driven photocatalyst, involving highly reactive species such as OH, O anions, h, and e, for the removal of organic and inorganic pollutants from water.
基于陶瓷的水处理过滤器是一种古老的技术,可以在家庭层面获得饮用水。传统的粘土锅(容器或空心圆柱形容器)在发展中国家已经使用了很长时间。陶瓷材料(CaCuTiO 或 CCTO)是一种钛氧化物、众所周知的紫外线活性光催化剂和可见光吸收 CuO 材料的异质结。这种异质结能够克服与其他常用金属氧化物半导体光催化剂相关的限制,如宽带隙、差的稳定性、低效率和高光生电荷(e/h)复合率。此外,CCTO 的低成本、可行和简单的合成路线引发了其在光电化学和光催化过程中的潜在应用。本综述将详细阐述现有的文献,证明 CCTO 光催化剂在水处理技术中的可见光活性。此外,本文还介绍了光催化的机理和合成路线,以扩大 CCTO 潜在应用的影响。扩展的多孔特性和优异的表面纹理使陶瓷材料成为在家庭层面上对抗水中细菌、病原体和浊度的理想选择。具体来说,可控的尺寸和形状使 CaCuTiO(CCTO)成为一种出色的可见光驱动光催化剂,涉及高反应性物质,如 OH、O 阴离子、h 和 e,用于从水中去除有机和无机污染物。