Advancements in TiO2-based photocatalysis for environmental remediation: Strategies for enhancing visible-light-driven activity

光催化 环境修复 材料科学 纳米技术 异质结 背景(考古学) 环境科学 化学 污染 催化作用 光电子学 有机化学 生态学 生物 古生物学
作者
Ruhma Rashid,Iqrash Shafiq,Muhammad Rehan Hasan Shah Gilani,Muhammad Maaz,Parveen Akhter,Murid Hussain,Kwang‐Eun Jeong,Eilhann E. Kwon,Sungjun Bae,Young‐Kwon Park
出处
期刊:Chemosphere [Elsevier BV]
卷期号:349: 140703-140703 被引量:96
标识
DOI:10.1016/j.chemosphere.2023.140703
摘要

Researchers have focused on efficient techniques for degrading hazardous organic pollutants due to their negative impacts on ecological systems, necessitating immediate remediation. Specifically, TiO2-based photocatalysts, a wide-bandgap semiconductor material, have been extensively studied for their application in environmental remediation. However, the extensive band gap energy and speedy reattachment of electron (e−) and hole (h+) pairs in bare TiO2 are considered major disadvantages for photocatalysis. This review extensively focuses on the combination of semiconducting photocatalysts for commercial outcomes to develop efficient heterojunctions with high photocatalytic activity by minimizing the e−/h+ recombination rate. The improved activity of these heterojunctions is due to their greater surface area, rich active sites, narrow band gap, and high light-harvesting tendency. In this context, strategies for increasing visible light activity, including doping with metals and non-metals, surface modifications, morphology control, composite formation, heterojunction formation, bandgap engineering, surface plasmon resonance, and optimizing reaction conditions are discussed. Furthermore, this review critically assesses the latest developments in TiO2 photocatalysts for the efficient decomposition of various organic contaminants from wastewater, such as pharmaceutical waste, dyes, pesticides, aromatic hydrocarbons, and halo compounds. This review implies that doping is an effective, economical, and simple process for TiO2 nanostructures and that a heterogeneous photocatalytic mechanism is an eco-friendly substitute for the removal of various pollutants. This review provides valuable insights for researchers involved in the development of efficient photocatalysts for environmental remediation.
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