Toxicity Reduction of Acrylic Resin by Eliminating Residual Free-Monomers for the Development of Silver Conductive Ink with Enhanced Stability

EN عنوان مقالهToxicity Reduction of Acrylic Resin by Eliminating Residual Free-Monomers for the Development of Silver Conductive Ink with Enhanced Stability
نویسندگانSahar Abdollahi Baghban
نشریهInstitute for Color Science and Technology with scientific cooperation of Iran Color Society
عنوان لاتين مجلهJournal of Color Science and Technology
كد DOI/DOR10.30509/jcst.2025.167617.1268
ارائه به نام دانشگاهDepartment of Environment and Color, Institute for Color Science and Technology, Tehran, Iran
شماره صفحات۱۹۳
صفحه پايان212
شماره مجلد۱۹
ضریب تاثیر (IF)_
نوع مقالهOriginal Research
تاریخ انتشار۲۰۲۵-۰۸-۲۳
رتبه نشریهعلمی - پژوهشی
نوع نشریهالکترونیکی
کشور محل چاپایران

چکیده مقاله

This study aimed to design a low-toxicity acrylic resin to develop a silver conductive ink for printing conductive circuits. A carboxylated-hydroxylated acrylic resin based on (meth)acrylate monomers was synthesized via a solution-free radical polymerization. The resin properties, a Tg: 40 °C, acid value: 8.2, and hydroxyl value: 56.6 mg KOH/g, were confirmed using DSC, FTIR, and titration analyses. Furthermore, gas chromatography, FTIR, and solid-content tests confirmed the absence of residual monomers to assess toxicity. Conductive inks containing 52-74 % silver nanoparticles (50-10 nm) were produced using the synthesized resin and applied via the screen method. The Ag-59 % ink, containing 59 % silver in the dry state, exhibiting a resistivity of 0.7 Ω.cm, excellent stability (no separation over 60 days), 5B crosscut adhesion, optimal viscosity, and a particle size of <10 µm, was selected as the optimized ink. SEM-EDX results confirmed the uniform distribution of silver nanoparticles within the dried ink. This acrylic resin can serve as an effective matrix for producing low-toxicity, stable, conductive ink with desirable electrical performance for tin-replacement applications.

لینک ثابت مقاله

tags: Silver Conductive Ink Toxicity from Residual Monomers Hydroxylated Carboxylated Acrylic Resin Conductivity Printed Electronic Circuits