We present a sustainable, inherently safe battery chemistry that is based on widely available and cheap materials, that is, iron and manganese hosted in alginate bio-material known from the food and medical industry. The resulting battery can be recycled to allow circularity. The electrodes were synthesised by the alginate caging the multi-valent metals to form a hydrogel in an aqueous environment. Characterisation includes FTIR, XPS and Mössbauer spectroscopy. The electrochemical performance of the electrodes was investigated by performing cyclic voltammetry (CV) and (dis)charge experiments. Mn and Fe ions show good co-ordination with the alginic acid with higher oxidation states demonstrating complex bonding behaviour. The non-optimised i...
The development of new battery technology that utilizes abundant electrode materials that are enviro...
Advancements in energy storage technologies need to keep pace with the accelerating transition to re...
Recently, room-temperature stationary sodium-ion batteries (SIBs) have received extensive investigat...
Electrolytic manganese dioxide (EMD) synthesized from different electrolytic baths with varying biop...
In the search for new large-scale battery technologies that are cheap, safe and durable, in this res...
International audienceNiAl Layered Double Hydroxide (LDH) alginate bionanocomposites were synthesize...
Binders are electrochemically inactive electrode components. However, their chemical and physical na...
Both the binder and solid–electrolyte interface play an important role in improving the cycling stab...
The use of water-processable binders could lower production costs and grant easier and more environm...
Batteries employing water based electrolytes enable extremely low manufacturing costs and are inhere...
The work presented here develops a new type of electrochemically active hydrogel based on alginate. ...
Aqueous zinc-ion batteries (AZIBs) have the potential to be utilized in a grid-scale energy storage ...
Hydrogels are highly water-absorbent three dimensional viscoelastic networks, mainly based on polyme...
This research was funded by the State Education Development Agency, the Republic of Latvia, grant nu...
The objective of this project was to develop efficient electrode materials for use in an aqueous alu...
The development of new battery technology that utilizes abundant electrode materials that are enviro...
Advancements in energy storage technologies need to keep pace with the accelerating transition to re...
Recently, room-temperature stationary sodium-ion batteries (SIBs) have received extensive investigat...
Electrolytic manganese dioxide (EMD) synthesized from different electrolytic baths with varying biop...
In the search for new large-scale battery technologies that are cheap, safe and durable, in this res...
International audienceNiAl Layered Double Hydroxide (LDH) alginate bionanocomposites were synthesize...
Binders are electrochemically inactive electrode components. However, their chemical and physical na...
Both the binder and solid–electrolyte interface play an important role in improving the cycling stab...
The use of water-processable binders could lower production costs and grant easier and more environm...
Batteries employing water based electrolytes enable extremely low manufacturing costs and are inhere...
The work presented here develops a new type of electrochemically active hydrogel based on alginate. ...
Aqueous zinc-ion batteries (AZIBs) have the potential to be utilized in a grid-scale energy storage ...
Hydrogels are highly water-absorbent three dimensional viscoelastic networks, mainly based on polyme...
This research was funded by the State Education Development Agency, the Republic of Latvia, grant nu...
The objective of this project was to develop efficient electrode materials for use in an aqueous alu...
The development of new battery technology that utilizes abundant electrode materials that are enviro...
Advancements in energy storage technologies need to keep pace with the accelerating transition to re...
Recently, room-temperature stationary sodium-ion batteries (SIBs) have received extensive investigat...