Siqiang 'Richard' Zhu spreads a polymer gel on a plastic sheet. The gel is part of a system that detoxifies fabrics that have come in contact with biological or chemical weapons. The full story is available here.
Crosslink Technical Lead Von Ebron explains the live-agent testing phase of the project he heads up at the St. Louis company's Springfield lab. The full story is available here.
Crosslink Technical Lead Von Ebron says his team's project is currently at a technology readiness level of between two and three, on a scale of one to six. The full story is available here.
Siqiang 'Richard' Zhu, Ph.D., checks a test print of Crosslink's polymer gel on a plastic sheet. The polymer gel is applied via a screenprint in the same method as printed T-shirts. The full story is available here.
Olga Shulga, Ph.D., research chemist III, works with a liquid chromatography mass spectrometer, using surrogates for chemical warfare agents to show the effectiveness the polymer. The Crosslink team is developing a self-detoxifying polymer system that will decontaminate U.S. Army shelters if they're attacked with biological or chemical weapons. The full story is available here.
Jenny Ulyanova, research chemist I, works with a gas chromatography mass spectrometer, using surrogates for chemical warfare agents to show the effectiveness the polymer. The Crosslink team is developing a self-detoxifying polymer system that will decontaminate U.S. Army shelters if they're attacked with biological or chemical weapons. The full story is available here.
This installment of Springfield Business Journal’s Architects & Engineers Project Report showcases 26 endeavors by area design and engineering professionals.