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Polymers of Intrinsic Microporosity for Improved Smart Device and Display Technologies
Electrochromic Devices Rapidly Changing Color for Supercapacitive and Pseudocapacitive Energy Storage These polymers of intrinsic microporosity (PIMs) use electrochromic materials that change color in response to an applied voltage for improved energy storage. Electrochromic materials switch color when a voltage potential is applied. These materials...
Published: 4/16/2026   |   Updated: 4/16/2026   |   Inventor(s): Austin Evans, Mahmudul Hasan, Rupam Roy, Kiana Treaster, Kaitlin Slicker, Ani Davis, Dibakar Das
Keywords(s):  
Category(s): Technology Classifications > Engineering > Chemical, Technology Classifications > Engineering > Materials
Precision Metathesis Polymerization for Chemically Recycling Plastics
Precisely Inserts In-Chain Functional Groups in Polymer Backbone, Rendering Polyethylene Recyclable This method of precise metathesis polymerization chemically recycles polyethylene by incorporating precisely placed functional groups into the polymer backbone. Plastic waste disposal poses a challenge globally, generating thousands of tons of waste...
Published: 2/4/2026   |   Updated: 11/6/2025   |   Inventor(s): Kenneth Wagener, Austin Evans
Keywords(s):  
Category(s): Technology Classifications > Engineering > Chemical
Polymers of Intrinsic Microporosity as Capacitive and Energy Storage Devices
Advanced Ionic Viologen-Based Polymers for High-Efficiency Supercapacitive Energy Storage and Regenerative Applications These permanently ionic, viologen-based polymers of intrinsic microporosity (PIMs) serve as as a standalone supercapacitor electrode material with energy-storing applications. There is a growing demand for electrically powered automobiles,...
Published: 1/20/2026   |   Updated: 3/31/2025   |   Inventor(s): Austin Evans, Joshua Marquez, Mahmudul Hasan, Rupam Roy
Keywords(s):  
Category(s): Technology Classifications > Engineering > Chemical, Technology Classifications > Others > Energy