Breaking new grounds in Zinc-Air battery research: studying the effects of innovative drying techniques on the structural and electrochemical properties of Carboxymethylcellulose-Chitosan-Citric Acid Hydrogels as Next-Generation Electrolytes
In current times, electrolytes based on polymeric materials have generated great interest due to their possible use as substitutes for liquid electrolytes or in other energy storage device applications. In particular, the use of biopolymers with a focus on sustainability leads to extensive research...
Furkejuvvon:
Váldodahkki: | Bósquez Cáceres, María Fernanda (author) |
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Materiálatiipa: | bachelorThesis |
Giella: | eng |
Almmustuhtton: |
2023
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Fáttát: | |
Liŋkkat: | http://repositorio.yachaytech.edu.ec/handle/123456789/625 |
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Breaking new grounds in Zinc-Air battery research: studying the effects of innovative drying techniques on the structural and electrochemical properties of Carboxymethylcellulose-Chitosan-Citric Acid Hydrogels as Next-Generation Electrolytes
Dahkki: Bósquez Cáceres, María Fernanda
Almmustuhtton: (2023) -
Chitosan-Carboxymethylcellulose Hydrogels as Electrolytes for Zinc–Air Batteries: An Approach to the Transition towards Renewable Energy Storage Devices
Dahkki: Bósquez Cáceres, María Fernanda
Almmustuhtton: (2022) -
Chitosan-Carboxymethylcellulose Hydrogels as Electrolytes for Zinc–Air Batteries: An Approach to the Transition towards Renewable Energy Storage Devices
Dahkki: Bósquez Cáceres, María Fernanda
Almmustuhtton: (2022) -
Enhancing Electrochemical Performance of Zinc-Air Batteries Using Freeze Crosslinked Carboxymethylcellulose-Chitosan Hydrogels as Electrolytes
Dahkki: Bósquez Cáceres, María Fernanda
Almmustuhtton: (2023) -
Enhancing Electrochemical Performance of Zinc-Air Batteries Using Freeze Crosslinked Carboxymethylcellulose-Chitosan Hydrogels as Electrolytes
Dahkki: Bósquez Cáceres, María Fernanda
Almmustuhtton: (2023)