Volume 10 Number 4 (Oct. 2020)
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IJBBB 2020 Vol.10(4): 180-192 ISSN: 2010-3638
DOI: 10.17706/IJBBB.2020.10.4. 180-192

Semiconductor Interfaced Biosensor

Ming Rui Zhang
Abstract—Semiconductor (SC) based field-effect transistors (FETs) have been demonstrated as an elite enhancer gadgets particularly their high delicate interface towards the surface adsorption, which lead wide application as sensor and biosensors. Be that as it may, traditional planned structures are enduring the low selectivity and significant expense, representing a significant boundary to down to earth application for the clinical finding. Presently the plan dependent on semiconductor material is considered for fitting wearable biosensor applications because of the fast reaction time for constant and consistent observing, enormous recognizable fixation extend, high affectability, high consistency for solid detecting, and the capacity to coordinate with other microfluidic and electronic practical gatherings. This survey abridged the latest advances in this field, which address ebb and flow difficulties in biosensor examine. The work pointing the further advancement and explicit applications for which these trademark properties become one of a kind (i.e., not effectively accomplished by different materials) have been reviewed here. Through solid requests for research and thought of sensor application, it will have the option to move the innovative sensor with the extraordinary semiconductor interface structure.

Index Terms— Biosensor, semiconductor, field effect transistor.

Ming Rui Zhang is with The university of Manchester, Manchester, UK.

Cite: Ming Rui Zhang, "Semiconductor Interfaced Biosensor," International Journal of Bioscience, Biochemistry and Bioinformatics vol. 10, no. 4, pp. 180-192, 2020.

Copyright © 2020 by the authors. This is an open access article distributed under the Creative Commons Attribution License which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited (CC BY 4.0).

General Information

ISSN: 2010-3638 (Online)
Abbreviated Title: Int. J. Biosci. Biochem. Bioinform.
Frequency: Quarterly 
DOI: 10.17706/IJBBB
Editor-in-Chief: Prof. Ebtisam Heikal 
Abstracting/ Indexing:  Electronic Journals Library, Chemical Abstracts Services (CAS), Engineering & Technology Digital Library, Google Scholar, and ProQuest.
E-mail: ijbbb@iap.org
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