Faculty of Science and Engineering, Manchester Metropolitan University, Chester Street, Manchester M1 5GD, UK.
Department of Chemistry, SVM Arts, Science & Commerce College, Ilkal-587125, Karnataka, India.
Anal Methods. 2023 Jun 8;15(22):2709-2720. doi: 10.1039/d3ay00658a.
One of the principal raw ingredients used in the manufacturing of pharmaceuticals, nuclear fuel, and semiconductors is hydroxylamine, a mutagenic and carcinogenic substance, ranking high on the list of environmental contaminants. Electrochemical methods for monitoring hydroxylamine have the advantage of being portable, quick, affordable, simple, sensitive, and selective enough to maintain adequate constraints in contrast with conventional yet laboratory based quantification methods. This review outlines the most recent advancements in electroanalysis directed toward the sensing of hydroxylamine. Potential future advancements in this field are also offered, along with a discussion of method validation and the use of such devices in real samples for the determination of hydroxylamine.
制药、核燃料和半导体制造中使用的主要原材料之一是羟胺,一种诱变剂和致癌物质,在环境污染物清单中排名很高。电化学方法监测羟胺具有便携、快速、经济、简单、灵敏和选择性强的优点,可以与传统的基于实验室的定量方法相比保持足够的限制。本文综述了最近在电分析领域为检测羟胺而进行的研究进展。还提出了该领域未来的潜在进展,并讨论了方法验证以及此类设备在实际样品中用于测定羟胺的应用。