Leverage Raman spectroscopy for non-destructive, high-throughput analysis of alkoxysilane hydrolysis. This method offers quantitative SiOH/SiOR ratio determination even in water-containing solutions, enhancing production adaptability.
Raman spectroscopy is an advanced analytical technique that offers a non-destructive approach to determine the SiOH/SiOR ratios in alkoxysilane solutions. Unlike traditional methods which may require water-free samples, Raman spectroscopy can effectively analyze solutions even in the presence of water, making it highly applicable for industrial processes involving siloxane and silicate materials. This solution is cost-effective for adaptation in production environments and provides high-throughput characterization with minimal interference from solvents.
The technology is at TRL 5, indicating that it has been validated in relevant environments but requires further development and refinement for full commercialization. A six-month timeline is anticipated to finalize methods for Raman use in production.
Bowling Green State University is a comprehensive public research university in Northwest Ohio with a pragmatic, industry‑engaged culture. Companies tap co‑located, application‑focused labs and shared instrumentation for prototyping, testing, and contract R&D, while structured internship and co‑op pathways provide steady talent pipelines. Its location near Toledo and the I‑75 corridor places partners close to a concentrated manufacturing and logistics ecosystem and within reach of key Midwest markets. Research is supported by competitive federal funding from agencies such as the National Science Foundation and National Institutes of Health, along with state programs and industry‑sponsored agreements. A dedicated technology transfer office streamlines IP protection, licensing, and startup support.