纳米传感器
软件可移植性
铅(地质)
生化工程
人类健康
风险分析(工程)
计算机科学
纳米技术
材料科学
环境科学
工程类
业务
生物
环境卫生
古生物学
程序设计语言
医学
作者
Harpreet Singh,Amy Bamrah,Sanjeev K. Bhardwaj,Akash Deep,Madhu Khatri,Ki–Hyun Kim,Neha Bhardwaj
标识
DOI:10.1016/j.jhazmat.2020.124379
摘要
Abstract Lead (Pb) poisoning has been a scourge to the human to pose sighnificant health risks (e.g., organ disorders, carcinogenicity, and genotoxicity) as observed from many different parts of the world, especially in developing countries. The demand for accurate sensors for its detection, especially in environmental media (soil, water, food, etc.) has hence been growing steadily over the years. The potential utility of fluorescent nanosensors as an important analytical tool is recognized due to their astonishing characteristics (e.g., high sensitivity/selectivity, enhanced detection performance, low cost, portability, and rapid on-site detection ability). This review is organized to offer insight into the recent developments in fluorescent nanosensing technology for the detection of lead ions (Pb2+). To this end, different types of nanomaterials explored for such applications have been classified and evaluated with respect to performance, especially in terms of sensitivity. This review will help researchers gain a better knowledge on the status and importance of optical nanosensors so as to remediate the contamination of lead and associated problems. The technical challenges and prospects in the development of nanosensing systems for Pb2+ are also discussed.
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