Pressure-Sensitive Adhesive Thin Films with Tailored Properties via Solvent-Free Plasma Deposition of EHA/AA Copolymers

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Date

2025

Authors

Gursoy, Mehmet
Karaman, Mustafa

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Elsevier

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Abstract

This study employs plasma-enhanced chemical vapor deposition (PECVD) to address the limitations of conventional techniques in fabricating pressure-sensitive adhesive (PSA) thin films and to introduce advanced functionalities. PECVD provides a solvent-free, environmentally sustainable approach, allowing precise control over film composition and properties. PSA thin films were synthesized using varying feed ratios of 2-ethylhexyl acrylate (EHA) and acrylic acid (AA) monomers. The optimized PSA film was synthesized at a substrate temperature of 5 degrees C, reactor pressure of 150 mTorr, plasma power of 50 W, and an AA/EHA monomer flow rate ratio of 1.5. The chemical, physical, and mechanical characteristics of the films were systematically evaluated. The optimized film demonstrated a shear strength of 158 N/cm2 and a peel strength of 0.87 N/25 mm. Furthermore, the film exhibited excellent solvent resistance and high durability.

Description

Gursoy, Mehmet/0000-0003-2275-9096

Keywords

PSA, Plasma, Coating, PECVD, Thin Film

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Q1

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Q1
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Source

Applied Surface Science

Volume

714

Issue

Start Page

164514

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