Biopolymers for Self-charging Batteries
We create a self-charging future!
Biopolymers for Self-charging Batteries
We create a self-charging future!
We create a self-charging future!
We create a self-charging future!
BioTron Energy is an innovative company that is developing conceptually new electrodes for energy storage. These electrodes have the potential to revolutionize various industries, including e-Transport (railway, aviation, maritime, electric vehicles (EVs), buses, trucks), large energy storages (industrial, household), material handling,
BioTron Energy is an innovative company that is developing conceptually new electrodes for energy storage. These electrodes have the potential to revolutionize various industries, including e-Transport (railway, aviation, maritime, electric vehicles (EVs), buses, trucks), large energy storages (industrial, household), material handling, automated guided vehicles (AGVs), equipment (construction, agriculture, household), government, defense, and more. The potential impact of this technology on energy storage and its applications across various industries is immense. It could bring about a significant shift in the way we think about and approach energy storage.
Biopolymers are large molecules made up of repeating subunits, or monomers, that occur naturally in living organisms. They are essential to life and perform a variety of functions, such as storing and transmitting genetic information, providing structural support to cells and tissues, and catalyzing biochemical reactions.
In recent years,
Biopolymers are large molecules made up of repeating subunits, or monomers, that occur naturally in living organisms. They are essential to life and perform a variety of functions, such as storing and transmitting genetic information, providing structural support to cells and tissues, and catalyzing biochemical reactions.
In recent years, biopolymers are being explored as potential materials for cathodes in batteries due to their renewable, biodegradable, and non-toxic nature. The development of biopolymer-based cathodes and energy storage devices has the potential to contribute to a more sustainable future.
We are pioneering a novel approach to energy storage using biopolymer-coated cathodes, which have shown remarkable self-charging capabilities in battery cells during the relaxation period without any external interference from electrical, mechanical, thermal, or chemical factors. This feature profoundly extends the battery's load-life. Mo
We are pioneering a novel approach to energy storage using biopolymer-coated cathodes, which have shown remarkable self-charging capabilities in battery cells during the relaxation period without any external interference from electrical, mechanical, thermal, or chemical factors. This feature profoundly extends the battery's load-life. Moreover, batteries with biopolymer-coated cathodes demonstrate unique and stable properties that result in significantly higher specific energy (Wh/kg) and specific capacity (Ah/kg) compared to any other known cathodes in conventional batteries. These features make them a game-changer in the industry.
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