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Synthesis of chitosan microgels via molybdate ionotropic gelation: a Box-Behnken design approach for efficient
Georgia A Douglas1, Kalyanshi Ubnare1, Mikhailey Wheeler2
1Department of Chemistry, University of Victoria, 3800 Finnerty Road, Victoria, BC, V8P 5C2, Canada; Centre for Advanced Materials and Related Technologies (CAMTEC), University of Victoria, 3800 Finnerty Road, Victoria, BC, V8P 5C2, Canada; Institute for Integrated Energy Systems (IESVic), University of Victoria, 3800 Finnerty Road, Victoria, BC, V8P 5C2, Canada.
Abstract:
Chitosan microgels, generated through ionotropic crosslinking with ammonium molybdate, were synthesized through the slow dropwise addition of a dilute crosslinking solution into a dilute chitosan solution. Several variables were investigated to improve the microgel synthesis to generate small and monodisperse samples, including crosslinker to chitosan ratio, pH and addition rate. Following initial scoping work, Design-of-Experiments was implemented to reduce the z-average diameter and dispersity. Box-Behnken design successfully optimized the chitosan-ammonium molybdate microgels, resulting in sub-150 nm microgel particles with a polydispersity index below 0.200. Microgels were characterized through Dynamic Light Scanning for microgel size and dispersity, confirmed and visualized by Transmission Electron Microscopy. Overall, we developed a novel approach to prepare chitosan microgels through crosslinking with ammonium molybdate and optimized their synthesis method through Box-Behnken experimental design.
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