The use of high-voltage, high-capacity positive electrodes in lithium ion batteries presents a challenge, given their tendency to degrade organic electrolytes. To prevent this damage, electrolyte additives modifying the cathode surface are required. Tris(trimethylsilyl) phosphite (TMSPi) is one such electrolyte additive. However, the mechanism for its protective action (similar to other phosphite, borate, and boroxane compounds) remains not completely understood. In LiPF<sub>6</sub> containing carbonate electrolytes, TMSPi undergoes reactions yielding numerous products. Here we demonstrate that one of these products, PF<sub>2</sub>OSiMe<sub>3</sub>, is responsible for mitigation of the impedance rise that occurs in aged cells during charge...
Highly fluorinated phosphate ester, tri(hexafluoro-iso-propyl)phosphate ((C3HF6O)3PO or HFiP), has b...
The beneficial role of lithium bis(trimethylsilyl) phosphate (LiTMSP), which may act as a novel bifu...
Ni-rich cathodes are the most promising candidates for realizing high-energy-density Li-ion batterie...
The use of high-voltage, high-capacity positive electrodes in lithium ion batteries presents a chall...
The tris(trimethylsilyl) phosphite (TMSPi) is considered as an ideal electrolyte additive for lithiu...
A thin, uniform, and highly stable protective layer tailored using tris(trimethylsilyl) phosphite (T...
International audienceIn this paper, we report positive effect of Tris(2,2,2-trifluoroethyl) phosphi...
A family of organophosphorus compounds including triphenyl phosphite (TPP), trimethyl phosphite (TMP...
Herein we address the key challenge towards the practical use of high-voltage lithium-ion cathode ma...
The introduction of a trimethylsilyl (TMS) motif in electrolyte additives is regarded as an effectiv...
High-voltage Li ion batteries are compromised by lower cycle life due to enhanced degradation of cat...
Nickel-rich LiNi0.8Co0.1Mn0.1O2 (NCM811) with respect to Li metal can enhance the energy density of ...
Fast-charging lithium-ion batteries (LIBs) can be achieved using structurally optimized electrodes a...
The characteristics of the interface between Ni-rich cathode materials and carbonate-based electroly...
Next generation high energy density lithium-ion batteries have aroused great interests worldwide. He...
Highly fluorinated phosphate ester, tri(hexafluoro-iso-propyl)phosphate ((C3HF6O)3PO or HFiP), has b...
The beneficial role of lithium bis(trimethylsilyl) phosphate (LiTMSP), which may act as a novel bifu...
Ni-rich cathodes are the most promising candidates for realizing high-energy-density Li-ion batterie...
The use of high-voltage, high-capacity positive electrodes in lithium ion batteries presents a chall...
The tris(trimethylsilyl) phosphite (TMSPi) is considered as an ideal electrolyte additive for lithiu...
A thin, uniform, and highly stable protective layer tailored using tris(trimethylsilyl) phosphite (T...
International audienceIn this paper, we report positive effect of Tris(2,2,2-trifluoroethyl) phosphi...
A family of organophosphorus compounds including triphenyl phosphite (TPP), trimethyl phosphite (TMP...
Herein we address the key challenge towards the practical use of high-voltage lithium-ion cathode ma...
The introduction of a trimethylsilyl (TMS) motif in electrolyte additives is regarded as an effectiv...
High-voltage Li ion batteries are compromised by lower cycle life due to enhanced degradation of cat...
Nickel-rich LiNi0.8Co0.1Mn0.1O2 (NCM811) with respect to Li metal can enhance the energy density of ...
Fast-charging lithium-ion batteries (LIBs) can be achieved using structurally optimized electrodes a...
The characteristics of the interface between Ni-rich cathode materials and carbonate-based electroly...
Next generation high energy density lithium-ion batteries have aroused great interests worldwide. He...
Highly fluorinated phosphate ester, tri(hexafluoro-iso-propyl)phosphate ((C3HF6O)3PO or HFiP), has b...
The beneficial role of lithium bis(trimethylsilyl) phosphate (LiTMSP), which may act as a novel bifu...
Ni-rich cathodes are the most promising candidates for realizing high-energy-density Li-ion batterie...