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用于环境污染物监测和修复的纳米酶。

Nanozymes for Environmental Pollutant Monitoring and Remediation.

机构信息

Aperture, Ryde, NSW 2112, Australia.

出版信息

Sensors (Basel). 2021 Jan 8;21(2):408. doi: 10.3390/s21020408.

Abstract

Nanozymes are advanced nanomaterials which mimic natural enzymes by exhibiting enzyme-like properties. As nanozymes offer better structural stability over their respective natural enzymes, they are ideal candidates for real-time and/or remote environmental pollutant monitoring and remediation. In this review, we classify nanozymes into four types depending on their enzyme-mimicking behaviour (active metal centre mimic, functional mimic, nanocomposite or 3D structural mimic) and offer mechanistic insights into the nature of their catalytic activity. Following this, we discuss the current environmental translation of nanozymes into a powerful sensing or remediation tool through inventive nano-architectural design of nanozymes and their transduction methodologies. Here, we focus on recent developments in nanozymes for the detection of heavy metal ions, pesticides and other organic pollutants, emphasising optical methods and a few electrochemical techniques. Strategies to remediate persistent organic pollutants such as pesticides, phenols, antibiotics and textile dyes are included. We conclude with a discussion on the practical deployment of these nanozymes in terms of their effectiveness, reusability, real-time in-field application, commercial production and regulatory considerations.

摘要

纳米酶是通过表现出类似酶的特性来模拟天然酶的先进纳米材料。由于纳米酶比其各自的天然酶具有更好的结构稳定性,因此它们是实时和/或远程环境污染物监测和修复的理想候选物。在这篇综述中,我们根据其模拟酶的行为(活性金属中心模拟、功能模拟、纳米复合材料或 3D 结构模拟)将纳米酶分为四类,并对其催化活性的本质提供了机制见解。接下来,我们通过纳米酶的创新性纳米结构设计及其转导方法,讨论将纳米酶转化为强大的传感或修复工具的当前环境转化。在这里,我们重点介绍了用于检测重金属离子、农药和其他有机污染物的纳米酶的最新进展,强调了光学方法和一些电化学技术。还包括了修复持久性有机污染物(如农药、酚类、抗生素和纺织染料)的策略。最后,我们讨论了这些纳米酶在实际应用中的有效性、可重复使用性、实时现场应用、商业生产和监管考虑等方面的问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e332/7827938/69180fe19339/sensors-21-00408-g001.jpg

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