FIELD: electricity.
SUBSTANCE: method of manufacturing biocompatible batteries includes the formation of cavities containing active cathode chemicals, while biocompatible batteries have a laminar construction using UV curable hydrogel compositions. The proposed method makes it possible to ensure control of the precise integration of known cathode volumes into a thin-film structure with subsequent realisation of the corresponding discharge capacitances. The active elements of the cathode and the anode are sealed with a laminate package of biocompatible material, while the castable and polymerizable hydrogel composition may contain one or more diluents for accelerated processing.
EFFECT: increasing the strength of the shell for chemical components of nutrition, increasing the control of the number of chemical components contained in the food.
31 cl, 45 dwg, 1 tbl
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METHODS OF FORMING BIOCOMPATIBLE RECHARGABLE ENERGISATION ELEMENTS FOR BIOMEDICAL DEVICES | 2015 |
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BIOLOGICAL COMPATIBILITY OF BIOMEDICAL ENERGISATION ELEMENTS | 2015 |
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METHODS TO FORM BIOCOMPATIBLE ENERGISATION ELEMENTS FOR BIOMEDICAL DEVICES COMPRISING LAMINATES AND PLACED SEPARATORS | 2015 |
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METHODS OF MANUFACTURING THIN-FILM FOOD ELEMENTS FOR BIOCOMPATIBLE DEVICES CONTAINING MULTILAYER COMPOSITES AND PRECIPITATED SEPARATORS | 2015 |
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RU2631333C2 |
ELECTROLYTE COMPOSITIONS FOR USE IN BIOCOMPATIBLE ENERGISATION ELEMENTS | 2015 |
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RU2684170C2 |
METHODS OF MANUFACTURE OF BIOCOMPATIBLE ENERGISATION ELEMENTS FOR BIOMEDICAL DEVICES CONTAINING MULTILAYER COMPOSITES AND OBJECTED DIVISIONS | 2015 |
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RU2670422C1 |
CATHODE MIXTURE FOR USE IN BIOCOMPATIBLE BATTERY | 2015 |
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RU2671968C2 |
DEVICE AND METHODS OF SEALING AND ENCLOSING BIOCOMPATIBLE ENERGISATION ELEMENTS IN SHELL | 2015 |
|
RU2675385C2 |
COMPONENTS WITH MULTIPLE ENERGISATION ELEMENTS FOR BIOMEDICAL DEVICES | 2015 |
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RU2665698C2 |
BATTERIES OF BIOMEDICAL DEVICE WITH ELECTRODEPOSITED CATHODES | 2017 |
|
RU2682482C1 |
Authors
Dates
2017-08-22—Published
2015-08-18—Filed