Mamun Abdulla Al, McGarrity Mason, Kim Jong-Hoon, Zhao Feng
School of Engineering and Computer Science, Washington State University, Vancouver, WA 98686, USA.
Micromachines (Basel). 2023 Aug 4;14(8):1557. doi: 10.3390/mi14081557.
DNA sensing is critical in various applications such as the early diagnosis of diseases and the investigation of forensic evidence, food processing, agriculture, environmental protection, etc. As a wide-bandgap semiconductor with excellent chemical, physical, electrical, and biocompatible properties, silicon carbide (SiC) is a promising material for DNA sensors. In recent years, a variety of SiC-based DNA-sensing technologies have been reported, such as nanoparticles and quantum dots, nanowires, nanopillars, and nanowire-based field-effect-transistors, etc. This article aims to provide a review of SiC-based DNA sensing technologies, their functions, and testing results.
DNA传感在多种应用中至关重要,如疾病的早期诊断、法医证据调查、食品加工、农业、环境保护等。作为一种具有优异化学、物理、电学和生物相容性的宽带隙半导体,碳化硅(SiC)是用于DNA传感器的一种很有前景的材料。近年来,已经报道了多种基于SiC的DNA传感技术,如纳米颗粒和量子点、纳米线、纳米柱以及基于纳米线的场效应晶体管等。本文旨在综述基于SiC的DNA传感技术、其功能及测试结果。