College of Environmental Science and Engineering, North China Electric Power University, Beijing 102206, China; School of Life Science, Shaoxing University, Shaoxing 312000, China.
College of Environmental Science and Engineering, North China Electric Power University, Beijing 102206, China.
J Environ Sci (China). 2022 May;115:190-214. doi: 10.1016/j.jes.2021.07.015. Epub 2021 Aug 3.
Aluminosilicate clay mineral (ACM) is a kind of typical raw materials that used widely in manufacturing industry owing to the abundant reserve and low-cost exploring. In past two decades, in-depth understanding on unique layered structure and abundant surface properties endows ACM in the emerging research and application fields. In field of solar-chemical energy conversion, ACM has been widely used to support various semiconductor photocatalysts, forming the composites and achieving efficient conversion of reactants under sunlight irradiation. To date, classic ACM such as kaolinite and montmorillonite, loaded with semiconductor photocatalysts has been widely applied in photocatalysis. This review summaries the recent works on ACM-based composites in photocatalysis. Focusing on the properties of surface and layered structure, we elucidate the different features in the composition with various functional photocatalysts on two typical kinds of ACM, i.e., type 1:1 and type 2:1. Not only large surface area and active surface hydroxyl group assist the substrate adsorption, but also the layered structure provides more space to enlarge the application of ACM-based photocatalysts. Besides, we overview the modifications on ACM from both external surface and the inter-layer space that make the formation of composites more efficiently and boost the photo-chemical process. This review could inspire more upcoming design and synthesis for ACM-based photocatalysts, leading this kind of economic and eco-friendly materials for more practical application in the future.
硅酸铝黏土矿物(ACM)是一种典型的原材料,由于储量丰富、勘探成本低,被广泛应用于制造业。在过去的二十年中,人们对 ACM 独特的层状结构和丰富的表面特性有了深入的了解,这使得 ACM 应用于新兴的研究和应用领域。在太阳能化学能转换领域,ACM 被广泛用于负载各种半导体光催化剂,形成复合材料,实现了在阳光照射下反应物的高效转化。迄今为止,经典的 ACM,如高岭石和蒙脱石,负载半导体光催化剂,已广泛应用于光催化领域。本综述总结了 ACM 基复合材料在光催化中的最新研究进展。本综述重点关注 ACM 的表面和层状结构特性,阐明了两种典型的 ACM(即 1:1 型和 2:1 型)中与各种功能光催化剂组成的不同特点。ACM 不仅具有较大的比表面积和活性表面羟基,有助于底物吸附,而且其层状结构还提供了更多的空间,扩大了 ACM 基光催化剂的应用。此外,我们还综述了 ACM 的内外表面和层间空间的改性,使复合材料的形成更高效,并促进光化学过程。本综述为 ACM 基光催化剂的设计和合成提供了新的思路,为未来将这种经济环保的材料应用于更多实际领域提供了契机。