Implementation of capacitance as simultaneous sensing and actuating tool in tapered microelectrode arrays for dielectrophoresis-on-a-chip application

Purpose: This paper aims to present the capacitance characterization of tapered dielectrophoresis (DEP) microelectrodes as micro-electro-mechanical system sensor and actuator device. The application of DEP-on-a-chip (DOC) can be used to evaluate and correlate the capacitive sensing measurement at an...

Full description

Bibliographic Details
Published in:Microelectronics International
Main Author: Buyong M.R.; Larki F.; Hakimi Zainal M.I.; Almahi A.Y.A.; Ismail A.G.; Hamzah A.A.; Kayani A.A.K.; Caille C.E.; Yeop Majlis B.
Format: Article
Language:English
Published: Emerald Group Holdings Ltd. 2020
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85091315300&doi=10.1108%2fMI-04-2020-0023&partnerID=40&md5=fcb12da9dd8676801e336a136810c42f
id 2-s2.0-85091315300
spelling 2-s2.0-85091315300
Buyong M.R.; Larki F.; Hakimi Zainal M.I.; Almahi A.Y.A.; Ismail A.G.; Hamzah A.A.; Kayani A.A.K.; Caille C.E.; Yeop Majlis B.
Implementation of capacitance as simultaneous sensing and actuating tool in tapered microelectrode arrays for dielectrophoresis-on-a-chip application
2020
Microelectronics International
37
4
10.1108/MI-04-2020-0023
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85091315300&doi=10.1108%2fMI-04-2020-0023&partnerID=40&md5=fcb12da9dd8676801e336a136810c42f
Purpose: This paper aims to present the capacitance characterization of tapered dielectrophoresis (DEP) microelectrodes as micro-electro-mechanical system sensor and actuator device. The application of DEP-on-a-chip (DOC) can be used to evaluate and correlate the capacitive sensing measurement at an actual position and end station of liquid suspended targeted particles by DEP force actuator manipulation. Design/methodology/approach: The capability of both, sensing and manipulation was analysed based on capacitance changes corresponding to the particle positioning and stationing of the targeted particles at regions of interest. The mechanisms of DEP sensor and actuator, designed in DOC applications were energized by electric field of tapered DEP microelectrodes. The actual DEP forces behaviour has been also studied via quantitative analysis of capacitance measurement value and its correlation with qualitative analysis of positioning and stationing of targeted particles. Findings: The significance of the present work is the ability of using tapered DEP microelectrodes in a closed mode system to simultaneously sense and vary the magnitude of manipulation. Originality/value: The integration of DOC platform for contactless electrical-driven with selective detection and rapid manipulation can provide better efficiency in in situ selective biosensors or bio-detection and rapid bio-manipulation for DOC diagnostic and prognostic devices. © 2020, Emerald Publishing Limited.
Emerald Group Holdings Ltd.
13565362
English
Article

author Buyong M.R.; Larki F.; Hakimi Zainal M.I.; Almahi A.Y.A.; Ismail A.G.; Hamzah A.A.; Kayani A.A.K.; Caille C.E.; Yeop Majlis B.
spellingShingle Buyong M.R.; Larki F.; Hakimi Zainal M.I.; Almahi A.Y.A.; Ismail A.G.; Hamzah A.A.; Kayani A.A.K.; Caille C.E.; Yeop Majlis B.
Implementation of capacitance as simultaneous sensing and actuating tool in tapered microelectrode arrays for dielectrophoresis-on-a-chip application
author_facet Buyong M.R.; Larki F.; Hakimi Zainal M.I.; Almahi A.Y.A.; Ismail A.G.; Hamzah A.A.; Kayani A.A.K.; Caille C.E.; Yeop Majlis B.
author_sort Buyong M.R.; Larki F.; Hakimi Zainal M.I.; Almahi A.Y.A.; Ismail A.G.; Hamzah A.A.; Kayani A.A.K.; Caille C.E.; Yeop Majlis B.
title Implementation of capacitance as simultaneous sensing and actuating tool in tapered microelectrode arrays for dielectrophoresis-on-a-chip application
title_short Implementation of capacitance as simultaneous sensing and actuating tool in tapered microelectrode arrays for dielectrophoresis-on-a-chip application
title_full Implementation of capacitance as simultaneous sensing and actuating tool in tapered microelectrode arrays for dielectrophoresis-on-a-chip application
title_fullStr Implementation of capacitance as simultaneous sensing and actuating tool in tapered microelectrode arrays for dielectrophoresis-on-a-chip application
title_full_unstemmed Implementation of capacitance as simultaneous sensing and actuating tool in tapered microelectrode arrays for dielectrophoresis-on-a-chip application
title_sort Implementation of capacitance as simultaneous sensing and actuating tool in tapered microelectrode arrays for dielectrophoresis-on-a-chip application
publishDate 2020
container_title Microelectronics International
container_volume 37
container_issue 4
doi_str_mv 10.1108/MI-04-2020-0023
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85091315300&doi=10.1108%2fMI-04-2020-0023&partnerID=40&md5=fcb12da9dd8676801e336a136810c42f
description Purpose: This paper aims to present the capacitance characterization of tapered dielectrophoresis (DEP) microelectrodes as micro-electro-mechanical system sensor and actuator device. The application of DEP-on-a-chip (DOC) can be used to evaluate and correlate the capacitive sensing measurement at an actual position and end station of liquid suspended targeted particles by DEP force actuator manipulation. Design/methodology/approach: The capability of both, sensing and manipulation was analysed based on capacitance changes corresponding to the particle positioning and stationing of the targeted particles at regions of interest. The mechanisms of DEP sensor and actuator, designed in DOC applications were energized by electric field of tapered DEP microelectrodes. The actual DEP forces behaviour has been also studied via quantitative analysis of capacitance measurement value and its correlation with qualitative analysis of positioning and stationing of targeted particles. Findings: The significance of the present work is the ability of using tapered DEP microelectrodes in a closed mode system to simultaneously sense and vary the magnitude of manipulation. Originality/value: The integration of DOC platform for contactless electrical-driven with selective detection and rapid manipulation can provide better efficiency in in situ selective biosensors or bio-detection and rapid bio-manipulation for DOC diagnostic and prognostic devices. © 2020, Emerald Publishing Limited.
publisher Emerald Group Holdings Ltd.
issn 13565362
language English
format Article
accesstype
record_format scopus
collection Scopus
_version_ 1809677783635329024