| Literature DB >> 27026595 |
R Adzhri1, M K Md Arshad2, Subash C B Gopinath3, A R Ruslinda4, M F M Fathil5, R M Ayub6, M Nuzaihan Mohd Nor7, C H Voon8.
Abstract
Field-effect transistors (FETs) have succeeded in modern electronics in an era of computers and hand-held applications. Currently, considerable attention has been paid to direct electrical measurements, which work by monitoring changes in intrinsic electrical properties. Further, FET-based sensing systems drastically reduce cost, are compatible with CMOS technology, and ease down-stream applications. Current technologies for sensing applications rely on time-consuming strategies and processes and can only be performed under recommended conditions. To overcome these obstacles, an overview is presented here in which we specifically focus on high-performance FET-based sensor integration with nano-sized materials, which requires understanding the interaction of surface materials with the surrounding environment. Therefore, we present strategies, material depositions, device structures and other characteristics involved in FET-based devices. Special attention was given to silicon and polyaniline nanowires and graphene, which have attracted much interest due to their remarkable properties in sensing applications.Entities:
Keywords: Field-effect transistor; Graphene; Nano-sized materials; Nanowire; Polyaniline; Silicon
Year: 2016 PMID: 27026595 DOI: 10.1016/j.aca.2016.02.042
Source DB: PubMed Journal: Anal Chim Acta ISSN: 0003-2670 Impact factor: 6.558