We demonstrate a new surface modification of high-voltage lithium cobalt oxide (tex:\small\textstyle$LiCoO_2$) cathode active materials for lithium-ion batteries. This approach is based on exploitation of a polarity-tuned gel polymer electrolyte (GPE) coating. Herein, two contrast polymers having different polarity are chosen: polyimide (PI) synthesized from thermally curing 4-component (pyromellitic dianhydride/biphenyl dianhydride/phenylenediamine/oxydianiline) polyamic acid (as a polar GPE) and ethylene-vinyl acetate copolymer (EVA) containing 12 wt% vinyl acetate repeating unit (as a less polar GPE). The strong affinity of polyamic acid for tex:\small\textstyle$LiCoO_2$ allows the resulting PI coating layer to present a highly-continuou...
Understanding and control of interfacial phenomena between electrode material and liquid electrolyte...
LiCoO2 has been widely used in lithium ion batteries for digital electronic products. However, the l...
Battery industries and research groups are further investigating LiCoO2 to unravel the capacity at h...
Abstract:We demonstrate a new surface modification of high-voltage lithium cobalt oxide (LiCoO 2) ca...
We demonstrate a novel and facile approach to surface modification of high-voltage charged LiCoO2, w...
We have previously demonstrated polyimide (PI) gel polymer electrolyte (GPE)-based nanoencapsulation...
In this study, nanoarchitectured polyimide (PI) gel polymer electrolyte (GPE)-coated lithium cobalt ...
A new and facile approach for the surface modification of high-voltage LiNi1/3Co1/3Mn1/3O2 cathode a...
A new and facile approach for the surface modification of high-voltage LiNi 1/3Co 1/3Mn 1/3O 2 catho...
In the development of high-voltage lithium-ion batteries, unwanted interfacial side reactions betwee...
A facile approach to the surface modification of spinel LiNi0.5Mn1.5O4 (LNMO) cathode active materia...
Rapidly growing demands for high-energy density lithium-ion batteries urge us to get much interested...
As a facile and scalable approach to the surface modification of high-voltage cathode materials for ...
Ion-conductive polyimide (PI)/electron-conductive carbon black (CB) composite nanocoating layers (re...
A unique approach for improving the thermal stability of delithiated LiCoO2 cathodes has been presen...
Understanding and control of interfacial phenomena between electrode material and liquid electrolyte...
LiCoO2 has been widely used in lithium ion batteries for digital electronic products. However, the l...
Battery industries and research groups are further investigating LiCoO2 to unravel the capacity at h...
Abstract:We demonstrate a new surface modification of high-voltage lithium cobalt oxide (LiCoO 2) ca...
We demonstrate a novel and facile approach to surface modification of high-voltage charged LiCoO2, w...
We have previously demonstrated polyimide (PI) gel polymer electrolyte (GPE)-based nanoencapsulation...
In this study, nanoarchitectured polyimide (PI) gel polymer electrolyte (GPE)-coated lithium cobalt ...
A new and facile approach for the surface modification of high-voltage LiNi1/3Co1/3Mn1/3O2 cathode a...
A new and facile approach for the surface modification of high-voltage LiNi 1/3Co 1/3Mn 1/3O 2 catho...
In the development of high-voltage lithium-ion batteries, unwanted interfacial side reactions betwee...
A facile approach to the surface modification of spinel LiNi0.5Mn1.5O4 (LNMO) cathode active materia...
Rapidly growing demands for high-energy density lithium-ion batteries urge us to get much interested...
As a facile and scalable approach to the surface modification of high-voltage cathode materials for ...
Ion-conductive polyimide (PI)/electron-conductive carbon black (CB) composite nanocoating layers (re...
A unique approach for improving the thermal stability of delithiated LiCoO2 cathodes has been presen...
Understanding and control of interfacial phenomena between electrode material and liquid electrolyte...
LiCoO2 has been widely used in lithium ion batteries for digital electronic products. However, the l...
Battery industries and research groups are further investigating LiCoO2 to unravel the capacity at h...