The organic ionic plastic crystal material N,N-dimethyl pyrrolidinium tetrafluoroborate ([C1mpyr][BF4]) has been mixed with LiBF4 from 0 to 8 wt% and shown to exhibit enhanced ionic conductivity, especially in the higher temperature plastic crystal phases (phases II and I). The materials retain their solid state well above 100 °C with the melt not being observed up to 300 °C. Interestingly the conductivity enhancement is highest with the lowest level of LiBF4 addition in phase II, but then the order of enhancement is reversed in phase I. In all cases, a conductivity drop is observed at the II → I phase transition (105 °C) which is associated with increased order in the pure matrix, as previously reported, although the condu...
Compared to conventional organic liquid electrolyte, solid-state polymer electrolytes are extensivel...
The properties of the mixed system LiBH$_{4}$–LiCl–P$_{2}$S$_{5}$ are studied with respect to all-so...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...
Investigations into the synthesis and utilisation of organic ionic plastic crystals have made signif...
While the high energy density of lithium metal has long been a strong driver for the development of ...
The incorporation of dopant levels of lithium ions (0.5 to 9.3% by mole) in the N-methyl-N-ethylpyrr...
Reliable, safe and high performance solid electrolytes are a critical step in the advancement of hig...
The incorporation of polyvinylidene difluoride (PVDF) electrospun nanofibres within N-ethyl-N-methyl...
A novel organosilicon-based ionic plastic crystal, N,N,N,-diethylmethyl-N-(trimethylsilyl)methylammo...
A novel organosilicon-based ionic plastic crystal, N,N,N,-diethylmethyl-N-(trimethylsilyl)methylammo...
A novel organosilicon-based ionic plastic crystal, N,N,N,-diethylmethyl-N-[(trimethylsilyl)methyl]am...
A novel organosilicon-based ionic plastic crystal, N,N,N,-diethylmethyl-N-(trimethylsilyl)methylammo...
A novel organosilicon-based ionic plastic crystal, N,N,N,-diethylmethyl-N-(trimethylsilyl)methylammo...
Organic ionic plastic crystals (OIPCs) show strong potential as solid-state electrolytes for lithium...
Solid composite electrolytes combining an ionic molecular phase to facilitate ion transport with a p...
Compared to conventional organic liquid electrolyte, solid-state polymer electrolytes are extensivel...
The properties of the mixed system LiBH$_{4}$–LiCl–P$_{2}$S$_{5}$ are studied with respect to all-so...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...
Investigations into the synthesis and utilisation of organic ionic plastic crystals have made signif...
While the high energy density of lithium metal has long been a strong driver for the development of ...
The incorporation of dopant levels of lithium ions (0.5 to 9.3% by mole) in the N-methyl-N-ethylpyrr...
Reliable, safe and high performance solid electrolytes are a critical step in the advancement of hig...
The incorporation of polyvinylidene difluoride (PVDF) electrospun nanofibres within N-ethyl-N-methyl...
A novel organosilicon-based ionic plastic crystal, N,N,N,-diethylmethyl-N-(trimethylsilyl)methylammo...
A novel organosilicon-based ionic plastic crystal, N,N,N,-diethylmethyl-N-(trimethylsilyl)methylammo...
A novel organosilicon-based ionic plastic crystal, N,N,N,-diethylmethyl-N-[(trimethylsilyl)methyl]am...
A novel organosilicon-based ionic plastic crystal, N,N,N,-diethylmethyl-N-(trimethylsilyl)methylammo...
A novel organosilicon-based ionic plastic crystal, N,N,N,-diethylmethyl-N-(trimethylsilyl)methylammo...
Organic ionic plastic crystals (OIPCs) show strong potential as solid-state electrolytes for lithium...
Solid composite electrolytes combining an ionic molecular phase to facilitate ion transport with a p...
Compared to conventional organic liquid electrolyte, solid-state polymer electrolytes are extensivel...
The properties of the mixed system LiBH$_{4}$–LiCl–P$_{2}$S$_{5}$ are studied with respect to all-so...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...