none6siElectrodes based on Li4Ti5O12(LTO) with sodium alginate (SA) binder featuring high percentage of active material and operating in glyme-based electrolyte are here proposed for the first time. Three electrode formulations operating in ethylene carbonate: dimethyl carbonate–1M LiPF6(LP30) and 1 m lithium bis(trifluoromethane) sulfonimide - tetraglyme were tested in half-cell vs. Li and compared to conventional 80% LTO and 10% polyvinylidene fluoride binder. Electrodes with 87% LTO and 3% SA binder show the best performance, with good rate capability and excellent cycling stability over 600 cycles at 1C in both electrolytes. The use of SA is beneficial as it allows made-in-water electrode manufacturing in absence of N-methyl-2-pyrrolido...
An environmentally benign, highly conductive, and mechanically strong binder system can overcome the...
We report the first fully compressed Li4Ti5O12 electrode designed by an aqueous process. An adhesive...
Non-fluorinated Li3V1.95Ni0.05(PO4)3/C-based electrodes were prepared by using sodium carboxymethyl ...
Electrodes based on Li4Ti5O12(LTO) with sodium alginate (SA) binder featuring high percentage of act...
none4siIn this study, Li4Ti5O12 (LTO) electrodes with different types of water-soluble binders are s...
Accepted Manuscript version. The Published Journal Article is available on Electrochimica Acta, Volu...
Binders are electrochemically inactive electrode components. However, their chemical and physical na...
Lithium titanium oxide (Li4Ti5O12, LTO) is an attractive negative electrode for the development of s...
The use of water-processable binders could lower production costs and grant easier and more environm...
Less expensive and greener aqueous electrode preparation processes are essential for the market pene...
none5siRheological properties of electrode slurries have been intensively studied for manifold diffe...
Rheological properties of electrode slurries have been intensively studied for manifold different co...
Lithium titanium oxide (Li4Ti5O12, LTO) is an attractive negative electrode for the development of s...
Environmentally friendly and cost-effective Li-ion cells are fabricated with abundant, non-toxic LiF...
We report the first fully compressed Li4Ti5O 12 electrode designed by an aqueous process. An adhesiv...
An environmentally benign, highly conductive, and mechanically strong binder system can overcome the...
We report the first fully compressed Li4Ti5O12 electrode designed by an aqueous process. An adhesive...
Non-fluorinated Li3V1.95Ni0.05(PO4)3/C-based electrodes were prepared by using sodium carboxymethyl ...
Electrodes based on Li4Ti5O12(LTO) with sodium alginate (SA) binder featuring high percentage of act...
none4siIn this study, Li4Ti5O12 (LTO) electrodes with different types of water-soluble binders are s...
Accepted Manuscript version. The Published Journal Article is available on Electrochimica Acta, Volu...
Binders are electrochemically inactive electrode components. However, their chemical and physical na...
Lithium titanium oxide (Li4Ti5O12, LTO) is an attractive negative electrode for the development of s...
The use of water-processable binders could lower production costs and grant easier and more environm...
Less expensive and greener aqueous electrode preparation processes are essential for the market pene...
none5siRheological properties of electrode slurries have been intensively studied for manifold diffe...
Rheological properties of electrode slurries have been intensively studied for manifold different co...
Lithium titanium oxide (Li4Ti5O12, LTO) is an attractive negative electrode for the development of s...
Environmentally friendly and cost-effective Li-ion cells are fabricated with abundant, non-toxic LiF...
We report the first fully compressed Li4Ti5O 12 electrode designed by an aqueous process. An adhesiv...
An environmentally benign, highly conductive, and mechanically strong binder system can overcome the...
We report the first fully compressed Li4Ti5O12 electrode designed by an aqueous process. An adhesive...
Non-fluorinated Li3V1.95Ni0.05(PO4)3/C-based electrodes were prepared by using sodium carboxymethyl ...