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dc.contributor.authorZilberg, R. A.en
dc.contributor.authorSalikhov, R. B.en
dc.contributor.authorMullagaliev, I. N.en
dc.contributor.authorTeres, Yu. B.en
dc.contributor.authorBulysheva, E. O.en
dc.contributor.authorSalikhov, T. R.en
dc.contributor.authorOstaltsova, A. D.en
dc.contributor.authorVakulin, I. V.en
dc.date.accessioned2024-10-15T07:27:55Z-
dc.date.available2024-10-15T07:27:55Z-
dc.date.issued2024-
dc.identifier.citationChitosan-Based Polyelectrolyte Complex in Combination with Allotropic Forms of Carbon as a Basis for Thin-Film Organic Electronics / Rufina Zilberg, Renat Salikhov, Ilnur Mullagaliev, Yulia Teres, Elena Bulysheva, Timur Salikhov, Anastasia Ostaltsova, Ivan Vakulin // Chimica Techno Acta. — 2024. — Vol. 11, No. 3. — № 202411302.en
dc.identifier.issn2411-1414online
dc.identifier.urihttp://elar.urfu.ru/handle/10995/138708-
dc.descriptionReceived: 30.05.2024. Revised: 11.06.2024. Accepted: 19.06.2024. Available online: 28.06.2024.en
dc.descriptionSamples of a new polymer composite material based on a PEC doped with various allotropic forms of carbon were prepared.en
dc.descriptionBased on the films studied, field-effect transistors were created and their output and transfer characteristics were measured.en
dc.descriptionIf a combination of both GO and SWCNT is incorporated into the nanocomposite, the mobility of carriers increases sharply.en
dc.description.abstractUsing atomic force microscopy, scanning electron microscopy, cyclic voltammetry and electrochemical impedance spectroscopy, the morphology and mobility of charge carriers in composite films with a thickness of no more than 500 nm obtained on the basis of a polyelectrolyte complex of chitosan and chitosan succinamide with addition of particles of carbon materials were studied and estimated. The following carbon materials were used: single-walled carbon nanotubes, graphene oxide, and carbon-containing sorbents with different specific surfaces (Carboblack C and Carbopack). Moreover, the studied materials in the form of films were used as a transport layer in the structure of field-effect transistors. The output and transfer characteristics of the transistors obtained were measured. According to the measurement results, the mobility of charge carriers, μ, ranges from 0.341 to 1.123 cm2 V–1·s–1, depending on the type of carbon material added. The best result was demonstrated by films based on a composite containing simultaneously single-walled carbon nanotubes and graphene oxide (μ = 10.972 cm2 V–1·s–1).en
dc.description.sponsorshipThis work was supported by the Ministry of Science and Higher Education of the Russian Federation (scientific code FZWU-2023-0002) and by the Russian Science Foundation (Grant № 23-73-00119), https://rscf.ru/project/23-73-00119/.en
dc.language.isoruen
dc.publisherУральский федеральный университетru
dc.publisherUral Federal Universityen
dc.relation.ispartofChimica Techno Acta. 2024. Vol. 11. № 3en
dc.subjectTHIN FILMSen
dc.subjectPOLYELECTROLYTE COMPLEX OF CHITOSAN AND CHITOSAN SUCCINATEen
dc.subjectOXIDE GRAPHENEen
dc.subjectCARBOBLACK Cen
dc.subjectCARBOPACKen
dc.subjectSWCNTen
dc.subjectVOLTAMMETRYen
dc.subjectFIELD-EFFECT TRANSISTORen
dc.titleChitosan-Based Polyelectrolyte Complex in Combination with Allotropic Forms of Carbon as a Basis for Thin-Film Organic Electronicsen
dc.typeArticleen
dc.identifier.rsihttps://www.elibrary.ru/item.asp?id=69207059-
dc.identifier.doi10.15826/chimtech.2024.11.3.02-
local.issue3-
local.volume11-
local.fund.rsf23-73-00119-
local.contributorZilberg, Rufina A.en
local.contributorSalikhov, Renat B.en
local.contributorMullagaliev, Ilnur N.en
local.contributorTeres, Yulia B.en
local.contributorBulysheva, Elena O.en
local.contributorSalikhov, Timur R.en
local.contributorOstaltsova, Anastasia D.en
local.contributorVakulin, Ivan V.en
Располагается в коллекциях:Chimica Techno Acta

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