Less expensive and greener aqueous electrode preparation processes are essential for the market penetration of lithium ion batteries to mid-scale applications. So far only carboxyl methyl cellulose (CMC) binder has been adopted for industrial use to fabricate carbon electrodes without harmful organic solvents but this process is prone to bacterial growth. In this study a new binder candidate, Acryl S020, is introduced for an aqueous preparation process that has been used for preparing Li4Ti5O12 electrodes for lithium ion batteries. It is shown that with our water based process electrodes with capacities comparable to those electrodes fabricated with the conventional organic solvent based process with the PVDF binder are obtained. Moreover, ...
Ni-rich layered oxide cathodes are promising candidates to satisfy the increasing energy demand of l...
The challenge of producing lithium-ion batteries meeting performance requirements and low environ- m...
The present work shows a way to develop an industrial organic solvent-free process for lithium-ion b...
Less expensive and greener aqueous electrode preparation processes are essential for the market pene...
AbstractLess expensive and greener aqueous electrode preparation processes are essential for the mar...
none4siIn this study, Li4Ti5O12 (LTO) electrodes with different types of water-soluble binders are s...
The emergence of new flexible and wearable technologies should be performed with environmental and s...
We report the first fully compressed Li4Ti5O 12 electrode designed by an aqueous process. An adhesiv...
peer reviewedThe development of Li-ion batteries for the new flexible technologies should also consi...
We report the first fully compressed Li4Ti5O12 electrode designed by an aqueous process. An adhesive...
This work elucidates the manufacturing of lithium titanate (Li4Ti5O12, LTO) electrodes via the aqueo...
Water-soluble acrylate (AcrylS020) was tested as a potential binder for graphite negative electrodes...
Electrodes based on Li4Ti5O12(LTO) with sodium alginate (SA) binder featuring high percentage of act...
This work elucidates the manufacturing of lithium titanate (Li$_{4}$Ti$_{5}$O$_{12}$, LTO) electrode...
The aqueous processing of carbon coated LiFePO4-based electrodes being proved; this study focuses on...
Ni-rich layered oxide cathodes are promising candidates to satisfy the increasing energy demand of l...
The challenge of producing lithium-ion batteries meeting performance requirements and low environ- m...
The present work shows a way to develop an industrial organic solvent-free process for lithium-ion b...
Less expensive and greener aqueous electrode preparation processes are essential for the market pene...
AbstractLess expensive and greener aqueous electrode preparation processes are essential for the mar...
none4siIn this study, Li4Ti5O12 (LTO) electrodes with different types of water-soluble binders are s...
The emergence of new flexible and wearable technologies should be performed with environmental and s...
We report the first fully compressed Li4Ti5O 12 electrode designed by an aqueous process. An adhesiv...
peer reviewedThe development of Li-ion batteries for the new flexible technologies should also consi...
We report the first fully compressed Li4Ti5O12 electrode designed by an aqueous process. An adhesive...
This work elucidates the manufacturing of lithium titanate (Li4Ti5O12, LTO) electrodes via the aqueo...
Water-soluble acrylate (AcrylS020) was tested as a potential binder for graphite negative electrodes...
Electrodes based on Li4Ti5O12(LTO) with sodium alginate (SA) binder featuring high percentage of act...
This work elucidates the manufacturing of lithium titanate (Li$_{4}$Ti$_{5}$O$_{12}$, LTO) electrode...
The aqueous processing of carbon coated LiFePO4-based electrodes being proved; this study focuses on...
Ni-rich layered oxide cathodes are promising candidates to satisfy the increasing energy demand of l...
The challenge of producing lithium-ion batteries meeting performance requirements and low environ- m...
The present work shows a way to develop an industrial organic solvent-free process for lithium-ion b...