Şerban Ionel, Enesca Alexandru
Product Design, Mechatronics and Environmental Department, Transilvania University of Brasov, Brasov, Romania.
Front Chem. 2020 May 19;8:354. doi: 10.3389/fchem.2020.00354. eCollection 2020.
The present mini review contains a concessive overview on the recent achievement regarding the implementation of a metal oxide semiconductor (MOS) in biosensors used in biological and environmental systems. The paper explores the pathway of enhancing the sensing characteristics of metal oxides by optimizing various parameters such as synthesis methods, morphology, composition, and structure. Four representative metal oxides (TiO, ZnO, SnO, and WO) are presented based on several aspects: synthesis method, morphology, functionalizing molecules, detection target, and limit of detection (LOD).
本微型综述对金属氧化物半导体(MOS)在生物和环境系统中使用的生物传感器方面的最新成果进行了全面概述。本文探讨了通过优化合成方法、形态、组成和结构等各种参数来增强金属氧化物传感特性的途径。基于合成方法、形态、功能化分子、检测目标和检测限(LOD)等几个方面,介绍了四种代表性金属氧化物(TiO、ZnO、SnO和WO)。