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Large-scale fabrication of ion-selective electrodes for simultaneous detection of Na+, K+, and Ca2+ in biofluids using a smartphone-based potentiometric sensing platform

dc.contributor.authorTeekayupak, Kanyapat
dc.contributor.authorLomae, Atchara
dc.contributor.authorAgir, Ismail
dc.contributor.authorChuaypen, Natthaya
dc.contributor.authorDissayabutra, Thasinas
dc.contributor.authorHenry, Charles S.
dc.contributor.authorChailapakul, Orawon
dc.contributor.authorOzer, Tugba
dc.contributor.authorRuecha, Nipapan
dc.date.accessioned2026-06-27T14:51:21Z
dc.date.issued2023
dc.description.abstractA significant bottleneck exists for mass-production of ion-selective electrodes despite recent developments in manufacturing technologies. Here, we present a fully-automated system for large-scale production of ISEs. Three materials, including polyvinyl chloride, polyethylene terephthalate and polyimide, were used as substrates for fabricating ion-selective electrodes (ISEs) using stencil printing, screen-printing and laser engraving, respectively. We compared sensitivities of the ISEs to determine the best material for the fabrication process of the ISEs. The electrode surfaces were modified with various carbon nanomaterials including multi-walled carbon nanotubes, graphene, carbon black, and their mixed suspensions as the intermediate layer to enhance sensitivities of the electrodes. An automated 3D-printed robot was used for the drop-cast procedure during ISE fabrication to eliminate manual steps. The sensor array was optimized, and the detection limits were 10(-5) M, 10(-5) M and 10(-4) M for detection of K+, Na+ and Ca2+ ions, respectively. The sensor array integrated with a portable wireless potentiometer was used to detect K+, Na+ and Ca2+ in real urine and simulated sweat samples and results obtained were in agreement with ICP-OES with good recoveries. The developed sensing platform offers low-cost detection of electrolytes for point-of-care applications.en
dc.description.sponsorship100th Anniversary Chulalongkorn University Fund for Doctoral Scholarship
dc.description.sponsorshipNational Research Council of Thailand [NRCT5-TRG63001-02]
dc.description.sponsorshipScientific and Technological Research Council of Turkey (TUBITAK) [122Z721, 120N615]
dc.description.urihttps://doi.org/10.1007/s00604-023-05818-8
dc.identifier.doi10.1007/s00604-023-05818-8
dc.identifier.eissn1436-5073
dc.identifier.issn0026-3672
dc.identifier.issue6
dc.identifier.pubmed37222781
dc.identifier.urihttps://hdl.handle.net/20.500.14981/65596
dc.identifier.volume190
dc.identifier.wos000994803500001
dc.language.isoeng
dc.publisherSPRINGER WIEN
dc.relation.ispartofMICROCHIMICA ACTA
dc.subjectIon-selective electrode
dc.subjectMass-production
dc.subjectPoint-of-care diagnosis
dc.subjectCarbon nanomaterial
dc.subjectWireless detection
dc.subjectCARBON-BLACK
dc.subjectBULK OPTODES
dc.subjectGRAPHENE
dc.subjectSENSORS
dc.subjectLAYER
dc.subjectTCNQ
dc.subjectChemistry
dc.titleLarge-scale fabrication of ion-selective electrodes for simultaneous detection of Na+, K+, and Ca2+ in biofluids using a smartphone-based potentiometric sensing platform
dc.typeArticle
dspace.entity.typePublication
local.import.sourceWOS

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