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DYONCON investigates how ions behave dynamically when confined in porous materials, specifically using ionic liquids and metal-organic frameworks. This research aims to enhance energy storage technologies and develop new applications in sensors and gas regulation through improved control of ion movement.
Transport phenomena of molecules and ions inside porous materials are paramount in various fields, ranging from energy storage and transformation to molecular separation.
In advanced energy storage devices, like supercapacitors and batteries, ions are confined in small pores.
Nanoconfinement effects change the ion properties and enhance the performance, vital for saving resources and energy.
So far, the static properties of nanoconfined ions are thoroughly studied but there is little known about…
FREIE UNIVERSITAET BERLIN
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