Biodegradable vegetable oil-based pressure sensitive adhesives

Technology
Conceptual
University

Novel biodegradable polymers derived entirely from vegetable oils that serve as high-performance pressure-sensitive adhesives, ideal for use with PHA films. The production process is fast, energy-efficient, and free of toxic chemicals and organic solvents, offering an environmentally friendly alternative to conventional petroleum-based adhesives.

Overview

This solution introduces a novel class of pressure-sensitive adhesives formulated entirely from vegetable oil-based polymers. Designed as a sustainable alternative to conventional petroleum-derived adhesives, these polymers are fully biodegradable and produced without toxic chemicals or organic solvents. The technology is particularly well-suited for bonding with polyhydroxyalkanoate (PHA) films, enabling fully compostable and bio-based packaging and labeling systems. By combining strong adhesive performance with environmental responsibility, this innovation addresses growing industry demand for sustainable materials in packaging, labeling, and product assembly.

Technical specifications
  • Bio-based composition: Polymers are solely derived from vegetable oils, ensuring renewable feedstock and biodegradability
  • Pressure-sensitive adhesive performance: Demonstrated strong adhesion properties suitable for industrial and commercial adhesive applications
  • Compatibility with PHA films: Specifically designed to function as an ideal adhesive for PHA-based biodegradable films
  • Clean production process: Manufacturing requires no toxic chemicals or organic solvents, eliminating hazardous waste streams
  • Energy-efficient manufacturing: Fast, low-energy production process reduces environmental footprint and operational costs
  • Laboratory-validated: Adhesive properties have been fully characterized and investigated in laboratory settings
Technology readiness level

The technology is currently at a laboratory-validated stage. Novel polymers have been successfully synthesized and characterized, and adhesive properties have been thoroughly investigated. The next phase of validation involves obtaining PHA films to verify adhesive performance in the targeted application environment. The clean, scalable production process positions this technology favorably for further development toward pilot-scale manufacturing and commercial deployment.


About Oregon State University

Oregon State University is a comprehensive public research university and Oregon’s land‑grant institution, with a main campus in Corvallis and a statewide footprint. Industry partners tap a statewide Extension network and county offices to pilot and scale solutions with communities and companies across Oregon. A coastal marine science campus in Newport anchors ocean research and provides access to open‑ocean wave‑energy test ranges and grid‑connected infrastructure under development nearby, enabling sea‑to‑shore prototyping. Field stations and university‑managed research forests support long‑term trials and product validation in real‑world environments. A dedicated technology transfer office and the OSU Advantage programs—including the Advantage Accelerator—streamline IP, licensing, startup formation, and industry agreements.

Sign up to access the full partnering listing.
View the details of this partnering listing and connect directly with the teams behind promising technologies.
Halo home
Partner smarter. Move faster.
Get new partnering requests
delivered to your inbox.