分析物
纳米技术
过渡金属
组合化学
席夫碱
生物传感器
化学
电化学
生化工程
计算机科学
材料科学
电极
有机化学
高分子化学
色谱法
催化作用
工程类
物理化学
作者
Érica Naomi Oiye,Maria Fernanda Muzetti Ribeiro,Juliana Midori Toia Katayama,Maraine Catarina Tadini,Marco Antônio Balbino,Izabel Cristina Eleotério,Juliana Gallottini Magalhães,Alex Soares Castro,Ricardo Soares Mota Silva,José Wilmo da Cruz Júnior,Edward R. Dockal,Marcelo Firmino de Oliveira
标识
DOI:10.1080/10408347.2018.1561242
摘要
Schiff bases and their transition metal complexes are inexpensive and easy to synthesize. These compounds display several structural and electronic features that allow their application in numerous research fields. Over the last three decades, electroanalytical scientists of various areas have developed electrochemical sensors from many compounds. The present review discusses the applicability of Schiff bases, their transition metal complexes and new materials containing these compounds as electrode modifiers in sensors to detect analytes of forensic, pharmaceutical and environmental interest. In forensic sciences, Schiff bases are mainly used to analyze illicit drugs: chemical reactions involving Schiff bases can help to elucidate illicit drug production and to determine analytes in seized samples. In the environmental area, given that most methodologies provide Limit of Detection (LOD) values below the values recommended by regulatory agencies, Schiff bases constitute a promising strategy. As for pharmaceutical applications, Schiff bases represent an approach for analysis of complex biological samples containing low levels of the target analytes in the presence of a large quantity of interfering compounds. This review will show that new highly specific materials can be synthesized based on Schiff bases and applied in the pharmaceutical industry, toxicological studies, electrocatalysis and biosensors. Most literature papers have reported on Schiff bases combined with carbon paste to give a chemically modified electrode that is easy and inexpensive to produce and which displays specific and selective sensing capacity for different applications.
科研通智能强力驱动
Strongly Powered by AbleSci AI