Publication:
Hemp-based microfluidics

dc.contributor.coauthorTemirel, Mikail
dc.contributor.departmentN/A
dc.contributor.departmentDepartment of Mechanical Engineering
dc.contributor.departmentDepartment of Mechanical Engineering
dc.contributor.kuauthorDabbagh, Sajjad Rahmani
dc.contributor.kuauthorTaşoğlu, Savaş
dc.contributor.kuprofileFaculty Member
dc.contributor.researchcenterKUAR (KU Arçelik Research Center for Creative Industries)
dc.contributor.researchcenterKUTTAM (Koç University Research Center for Translational Medicine)
dc.contributor.schoolcollegeinstituteGraduate School of Social Sciences and Humanities
dc.contributor.schoolcollegeinstituteCollege of Engineering
dc.contributor.yokidN/A
dc.contributor.yokid291971
dc.date.accessioned2024-11-09T12:18:12Z
dc.date.issued2021
dc.description.abstractHemp is a sustainable, recyclable, and high-yield annual crop that can be used to produce textiles, plastics, composites, concrete, fibers, biofuels, bionutrients, and paper. The integration of microfluidic paper-based analytical devices (µPADs) with hemp paper can improve the environmental friendliness and high-throughputness of µPADs. However, there is a lack of sufficient scientific studies exploring the functionality, pros, and cons of hemp as a substrate for µPADs. Herein, we used a desktop pen plotter and commercial markers to pattern hydrophobic barriers on hemp paper, in a single step, in order to characterize the ability of markers to form water-resistant patterns on hemp. In addition, since a higher resolution results in densely packed, cost-effective devices with a minimized need for costly reagents, we examined the smallest and thinnest water-resistant patterns plottable on hemp-based papers. Furthermore, the wicking speed and distance of fluids with different viscosities on Whatman No. 1 and hemp papers were compared. Additionally, the wettability of hemp and Whatman grade 1 paper was compared by measuring their contact angles. Besides, the effects of various channel sizes, as well as the number of branches, on the wicking distance of the channeled hemp paper was studied. The governing equations for the wicking distance on channels with laser-cut and hydrophobic side boundaries are presented and were evaluated with our experimental data, elucidating the applicability of the modified Washburn equation for modeling the wicking distance of fluids on hemp paper-based microfluidic devices. Finally, we validated hemp paper as a substrate for the detection and analysis of the potassium concentration in artificial urine.
dc.description.fulltextYES
dc.description.indexedbyWoS
dc.description.indexedbyScopus
dc.description.indexedbyPubMed
dc.description.issue2
dc.description.openaccessYES
dc.description.publisherscopeInternational
dc.description.sponsoredbyTubitakEuTÜBİTAK
dc.description.sponsorshipRoyal Academy Newton-Katip Çelebi Transforming Systems Through Partnership Award
dc.description.versionPublisher version
dc.description.volume12
dc.formatpdf
dc.identifier.doi10.3390/mi12020182
dc.identifier.embargoNO
dc.identifier.filenameinventorynoIR02712
dc.identifier.issn2072-666X
dc.identifier.linkhttps://doi.org/10.3390/mi12020182
dc.identifier.quartileQ2
dc.identifier.scopus2-s2.0-85101211622
dc.identifier.urihttps://hdl.handle.net/20.500.14288/1450
dc.identifier.wos622841900001
dc.keywordsDiagnostics
dc.keywordsHemp
dc.keywordsMicrofluidics
dc.keywordsPaper
dc.keywordsUrine diagnostics
dc.languageEnglish
dc.publisherMultidisciplinary Digital Publishing Institute (MDPI)
dc.relation.grantno120N019
dc.relation.urihttp://cdm21054.contentdm.oclc.org/cdm/ref/collection/IR/id/9358
dc.sourceMicromachines
dc.subjectChemistry
dc.subjectScience and technology
dc.subjectInstruments and instrumentation
dc.subjectPhysics
dc.titleHemp-based microfluidics
dc.typeJournal Article
dspace.entity.typePublication
local.contributor.authoridN/A
local.contributor.authorid0000-0003-4604-217X
local.contributor.kuauthorDabbagh, Sajjad Rahmani
local.contributor.kuauthorTaşoğlu, Savaş
relation.isOrgUnitOfPublicationba2836f3-206d-4724-918c-f598f0086a36
relation.isOrgUnitOfPublication.latestForDiscoveryba2836f3-206d-4724-918c-f598f0086a36

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