DOE OSTI · 1768663
Chemically controlled pattern formation in self-oscillating elastic shells
Abstract
Significance Mechanochemical processes drive various biological functions including morphogenesis and morphological changes in responsive synthetic hydrogels. By allowing reactive components to function in an elastic closed shell, autonomous chemical reactions generate microcompartments capable of expanding or contracting or induce buckled patterns. This capability can drive specific functions such as enhancing the rate of diffusion of compartmentalized chemicals or releasing cargos at specific rates. Here, we demonstrate the coupling of mechanical response to autonomous chemical reactions in elastic shells which swell and deswell to generate specific dynamic patterns and morphologies. The reverse feedback from the mechanical input triggers the chemical reaction. Our work inspires the design of responsive shells to enhance the functionality of microcompartments and nanoreactors.
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Li, Siyu, Matoz-Fernandez, Daniel A., Aggarwal, Aaveg, Olvera de la Cruz, Monica. 2021-03-09. Chemically controlled pattern formation in self-oscillating elastic shells. https://doi.org/10.1073/pnas.2025717118
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