Din Muhammad Imran, Khalid Rida, Hussain Zaib, Najeeb Jawayria, Sahrif Ahsan, Intisar Azeem, Ahmed Ejaz
Institute of Chemistry, University of the Punjab New Campus Lahore 54590 Pakistan
Department of Chemistry, University of Gujrat Gujarat 50700 Pakistan
RSC Adv. 2020 May 19;10(32):19041-19058. doi: 10.1039/d0ra01745k. eCollection 2020 May 14.
Conversion of nitroaniline (NA), a highly toxic pollutant that has been released into aquatic systems due to unmanaged industrial development in recent years, into the less harmful or a useful counterpart is the need of the hour. Various methods for its conversion and removal have been explored. Owing to its nominal features of advanced effectiveness, the chemical reduction of 4-NA using various different nanocatalytic systems is one such approach that has attracted tremendous interest over the past few years. The academic literature has been confined to case studies involving silver (Ag) and gold (Au) nanoparticles, as these are the two most widely used materials for the synthesis of nanocatalytic assemblies. Focus has also been given to sodium borohydride (NaBH), which is used as a reductant during the chemical reduction of NA. This systematic review summarizes the fundamentals associated with the catalytic degradation of 4-NA, and presents a comprehensive and critical study of the latest modifications used in the synthesis of these catalytic systems. In addition, the kinetics, mechanisms, thermodynamics, as well as the future directions required for understanding this model reaction, have been provided in this particular study.
近年来,由于工业发展无序,剧毒污染物硝基苯胺(NA)被排放到水体系统中。将其转化为危害较小或有用的物质已成为当务之急。人们探索了多种转化和去除它的方法。由于具有高效的显著特点,使用各种不同的纳米催化体系对4-NA进行化学还原是过去几年中备受关注的一种方法。学术文献一直局限于涉及银(Ag)和金(Au)纳米颗粒的案例研究,因为这两种材料是合成纳米催化组件最广泛使用的材料。还关注了硼氢化钠(NaBH),它在NA的化学还原过程中用作还原剂。本系统综述总结了与4-NA催化降解相关的基本原理,并对这些催化体系合成中使用的最新改进进行了全面且批判性的研究。此外,本研究还提供了该模型反应的动力学、机理、热力学以及未来研究方向。