Innovative artificial hair fibers crafted from wheat gluten and sodium alginate, offering a biosafe and eco-friendly alternative with properties similar to human hair. The fibers are strong, thermoplastic, and dyeable, suitable for styling and beauty applications.
This cutting-edge solution involves the creation of artificial hair fibers using wheat gluten and sodium alginate, both natural and renewable materials. The process leverages a wet spinning technique to blend these materials into fibers that mimic the chemical and physical properties of human hair. This eco-friendly approach uses water as a solvent and natural materials, ensuring the product is non-toxic and biosafe. The resulting fibers exhibit a surface texture and hygroscopicity akin to natural hair, making them ideal for various styling and beauty treatments.
The artificial hair fibers are formed by mixing wheat gluten and sodium alginate in a base solution with glutaraldehyde as a crosslinker and acid black as a dye. The mixture is wet-spun into a calcium chloride coagulation bath, which precipitates the protein and further crosslinks the alginate. This process creates strong, thermoplastic fibers with a groove surface structure. The fibers are capable of being dyed due to the amino and hydroxyl groups present in the materials, allowing for customization in color. Key features include:
This technology is at a TRL 4, indicating that it has been validated in a laboratory environment. Future steps include optimizing fabrication parameters and conducting thorough chemical, physical, and durability tests to ensure product reliability and performance in real-world applications.
Syracuse University is a comprehensive private research university in upstate New York, pairing fundamental inquiry with applied, industry-facing work. Industry engagement is anchored by a downtown innovation campus with co-located university–industry labs, pilot-scale testbeds, and flexible prototyping spaces. A centralized corporate partnerships office and experiential learning pipelines link R&D teams to faculty and student talent through sponsored research, internships, and capstone collaborations. Research is supported by competitive federal funding from agencies such as the National Science Foundation, National Institutes of Health, the Department of Energy, and the Department of Defense. A dedicated technology transfer office and campus-linked incubators streamline IP, licensing, and startup formation.