Please use this identifier to cite or link to this item: http://dspace.unimap.edu.my:80/xmlui/handle/123456789/32973
Title: Potentiality of polysilicon nanogap structure for label-free biomolecular detection
Authors: Thikra S., Dhahi
Uda, Hashim, Prof. Dr.
Md Eaqub, Ali, Dr.
sthikra@yahoo.com
uda@unimap.edu.my
eaqubali@um.edu.my
Keywords: Dielectric-based biomolecular detection
Double-layer capacitance
Nanogap electrodes
Sensors
Silicon
Issue Date: 2013
Publisher: Emerald Group Publishing Limited
Citation: Microelectronics International, vol. 30(2), 2013, pages 68-72
Abstract: Purpose - The purpose of this paper was to systematically study the electrical properties of 5-, 42- and 75-nm gap polysilicon structures to evaluate the potentiality of these structures to be used in biomolecular sensing devices. Design/methodology/approach - The authors previously reported the fabrication and morphological characterization of these structures. In this report, they electrically probed the presence of nanogap through current measurement. The effects of electrolytes on the capacitance profiles of these structures were systematically studied with air, water and various dilutions of phosphate buffer saline. Findings - An increment in capacitance was found with the increment in electrolyte concentration. Improvement in current flow, capacitance, permittivity, and conductivity were observed with the smaller size nanogaps, suggesting their applications in low power consuming devices. Originality/value - Since nanogap-based dielectric biosensing devices need to be operated with a low level of current to avoid biomolecular damage, these structures should have potential applications in dielectric-based biomolecular detection using a low cost dielectric analyser.
Description: Link to publisher's homepage at http://www.emeraldinsight.com/
URI: http://www.emeraldinsight.com/journals.htm?articleid=17086469
http://dspace.unimap.edu.my:80/dspace/handle/123456789/32973
ISSN: 1356-5362
Appears in Collections:Institute of Nano Electronic Engineering (INEE) (Articles)
Uda Hashim, Prof. Ts. Dr.

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