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Influence of drying temperature and graphite concentration on the performance of graphite-based conductive ink

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http://hdl.handle.net/20.500.14044/39387
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  • Scientific, Technical and Art Releases 2026 [28]
Abstract
This paper examines how drying temperature influences the electrical and mechanical properties of graphite-based conductive ink. Special emphasis was placed on electrical conductivity and abrasion resistance. The ink formulations were prepared using graphite powder with a particle size below 20 μm as the conductive component, while a commercially available water-based printing ink served as the binder. To evaluate the influence of filler loading on the formation of conductive networks, graphite was incorporated at concentrations of 30 wt.% and 40 wt.%. To ensure a uniform coating layer, the inks were applied onto a smooth polymer-coated paper substrate using a glass rod. The printed samples were dried for 15 minutes at four different temperatures (60 °C, 80 °C, 100 °C, and 120 °C). Electrical performance was assessed via surface resistance measurements, while abrasion resistance was used to assess the durability and adhesion of the conductive layers. Based on the measurements, it was found that both drying temperature and graphite concentration significantly influence the performance of the coatings. Improved electrical conductivity was observed at higher graphite content, while drying at moderate temperatures promoted better particle contact and a more stable conductive network. However, excessively high drying temperatures led to reduced mechanical stability, likely due to binder degradation. In our experiment, particular attention was given to maintaining constant homogenization, application with a glass rod and drying time. This paper contributes to a better understanding of the role of processing parameters in graphite-based conductive inks and supports the optimisation of formulations and drying conditions for functional printed materials.
Title
Influence of drying temperature and graphite concentration on the performance of graphite-based conductive ink
xmlui.dri2xhtml.METS-1.0.item-description-titlenumber
3.
Author
Kulčar, Rahela
Šarčević, Iva
Lukavski, Teodora
Itrić Ivanda, Katarina
Vukoje, Marina
Cigula, Tomislav
xmlui.dri2xhtml.METS-1.0.item-contributor-editor
Horváth, Csaba
xmlui.dri2xhtml.METS-1.0.item-contributor-institution
Koltai, László
xmlui.dri2xhtml.METS-1.0.item-date-issued
2026
xmlui.dri2xhtml.METS-1.0.item-rights-access
Open access
xmlui.dri2xhtml.METS-1.0.item-other-conferenceTitle
Scientific, Technical and Art Releases – 2026
xmlui.dri2xhtml.METS-1.0.item-other-conferenceDate
2026
xmlui.dri2xhtml.METS-1.0.item-language
en
xmlui.dri2xhtml.METS-1.0.item-format-page
8 p.
xmlui.dri2xhtml.METS-1.0.item-subject-oszkar
conductive ink, graphite, abrasion resistance, ink drying
xmlui.dri2xhtml.METS-1.0.item-description-version
Kiadói változat
xmlui.dri2xhtml.METS-1.0.item-identifiers
DOI: 10.12700/STAR.2026.022
xmlui.dri2xhtml.METS-1.0.item-other-containerTitle
Scientific, Technical and Art Releases – 2026
xmlui.dri2xhtml.METS-1.0.item-other-containerPeriodicalYear
2026
xmlui.dri2xhtml.METS-1.0.item-other-containerIdentifierIsbn
2786-3638
xmlui.dri2xhtml.METS-1.0.item-type-type
Tudományos cikk
xmlui.dri2xhtml.METS-1.0.item-subject-area
Műszaki tudományok - anyagtudományok és technológiák
xmlui.dri2xhtml.METS-1.0.item-publisher-university
Óbudai Egyetem
xmlui.dri2xhtml.METS-1.0.item-publisher-faculty
Rejtő Sándor Könnyűipari és Környezetmérnöki Kar

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