聚吡咯
光催化
材料科学
纳米技术
环境污染
污染物
化学
聚合物
环境科学
催化作用
有机化学
聚合
环境保护
复合材料
作者
Rohit Kumar,Pankaj Raizada,Tanisr Ahamad,Saad M. Alshehri,Quyet Van Le,Taghrid S. Alomar,Van‐Huy Nguyen,Rangabhashiyam Selvasembian,Sourbh Thakur,Duy Chinh Nguyen,Pardeep Singh
出处
期刊:Chemosphere
[Elsevier BV]
日期:2022-05-19
卷期号:303: 134993-134993
被引量:46
标识
DOI:10.1016/j.chemosphere.2022.134993
摘要
Aqueous contaminants such as pharmaceuticals, dyes, personal care products, etc., are the common water contaminants that show adverse health effects. Photocatalysis is one of the well-known techniques to treat these water contaminants. Currently, most inorganic photocatalysts show a poor balance between adsorption and photocatalytic activity. In addition, heavy metal pollution and low biosafety are significant concerns in photocatalysis. Thus, environmentally friendly photocatalysts are required to avoid the secondary pollution caused by some inorganic semiconductor-photocatalysts. Organic polymer-based photocatalysts are low-cost, stable, non-toxic, and can utilize visible and NIR light for photocatalysis. In this review, we have discussed polypyrrole as a photocatalyst. Polypyrrole is a conducting organic polymer photocatalyst that is highly stable with high charge mobility and strong binding sites for photocatalytic reactions. Besides these advantages, polypyrrole has limitations, such as high charge recombination due to a small bandgap and poor dispersity. So we have explored the modifications to polypyrrole photocatalysts, such as doping and heterojunctions. Further, we have explained the applications of polypyrrole in photocatalysis as an adsorbent, sensitizer, degradation of pollutants, and energy production. Finally, the future aspects of polypyrrole photocatalysis are also explored to improve the path of future research.
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