Hydrogen bonding interactions {among|amongst} water molecules play a {critical|crucial|vital|essential|important} {role|function|part} in chemical reactivity, dynamic proton mobility, static dielectric behavior, and thermodynamic properties of water. {In this|Within this} study, we demonstrate the modification of ionic conductivity of water {via|by way of|through|by means of} hybridization with vacuum electromagnetic field by strongly coupling O–H stretching mode of H2O to a Fabry–Perot cavity mode. This {leads to|results in} formation of collective vibro-polaritonic states which, as experiments show, enhances the proton conductivity does {increase|improve|boost|enhance|raise} by an order of magnitude at resonance. {In addition|Additionally|Furthermore|Moreover|Also}, {an increase|a rise} of dielectric constants is observed at resonance {in the|within the|inside the} coupled state. Our {finding|discovering|locating|obtaining|acquiring|getting} illustrates that the {potential|possible|prospective} of engineering a vacuum electromagnetic {environment|atmosphere} to {control|manage|handle} the ground-state properties of water. Azido-PEG4-C2-acid manufacturer 2-Bromo-N-methyl-5-nitropyridin-4-amine Chemical name PMID:36717102

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