Summary:
The physical basis of the electret state of water is its water clusters’ molecule dissociation, which results in the formation of hydrogen ions (H +) and hydroxyl (HO--). These ions interact with molecules and form the following molecular-ion complexes (or complex ions): H + × H2O (hydronium ion) and HO-- × H2O (hydroxide ion). According to the laws of electrodynamics and chemical thermodynamics, these ions form quasi-dipoles, hydronium ion --- hydroxide ion. These quasi-dipoles constantly generate a strong electrostatic field. The formation of quasi-dipoles and the process of destruction because of recombination of ions occur simultaneously and, thus, the field generation stops. If the formation of quasi- dipoles prevails over their destruction, then a water cluster generates the electric field permanently, which is a characteristic manifestation of the electret state of matter. This allows identifying the water cluster as a nano-electret. As the result of their fields’ superposition, orderly disposed nano-electrets create a strong electric field of water, which is a characteristic feature of its electret state.
See full text in the Russian version.
The physical basis of the electret state of water is its water clusters’ molecule dissociation, which results in the formation of hydrogen ions (H +) and hydroxyl (HO--). These ions interact with molecules and form the following molecular-ion complexes (or complex ions): H + × H2O (hydronium ion) and HO-- × H2O (hydroxide ion). According to the laws of electrodynamics and chemical thermodynamics, these ions form quasi-dipoles, hydronium ion --- hydroxide ion. These quasi-dipoles constantly generate a strong electrostatic field. The formation of quasi-dipoles and the process of destruction because of recombination of ions occur simultaneously and, thus, the field generation stops. If the formation of quasi- dipoles prevails over their destruction, then a water cluster generates the electric field permanently, which is a characteristic manifestation of the electret state of matter. This allows identifying the water cluster as a nano-electret. As the result of their fields’ superposition, orderly disposed nano-electrets create a strong electric field of water, which is a characteristic feature of its electret state.
See full text in the Russian version.
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