All solid state 3D batteries are pursued for their increased safety and high power capabilities. At present conformal coating of the solid electrolyte remains one of the key hurdles for the implementation of such devices. In the present work we investigate atomic layer deposition (ALD) as means of conformal deposition of lithium phosphate (Li3PO4) and nitrogen doped lithium phosphates (LiPON). These processes are characterized here to obtain the highest possible Li-ion conductivity. Li3PO4 is shown to yield a conductivity of 10−10 S/cm at 25°C. On the other hand, an optimized LiPON process gave rise to a Li-ion conductivity of 510−7 S/cm at 25°C. In addition, good conformality of the LiPON process was shown on high aspect ratio pillars. Fur...
All-solid-state 3D integrated batteries can reach the energy storage capacity required for future wi...
Thin film solid state batteries (SSBs) are an attractive energy storage technology due to their intr...
Nanostructuring is targeted as a solution to achieve the improvements required for implementing Li-i...
All solid state 3D batteries are pursued for their increased safety and high power capabilities. At ...
All solid state 3D batteries are pursued for their increased safety and high power capabilities. At ...
Several active areas of research in novel energy storage technologies, including three-dimensional s...
This thesis outlines methodology and development of an atomic layer deposition (ALD) process for the...
In the last few years, with the advance of electrical vehicles and number of devices needing safe ba...
We demonstrate an atomic layer deposition (ALD) process for the solid electrolyte lithium phosphorou...
High quality Lithium phosphate (Li3PO4) thin films have been deposited by metal-organic chemical vap...
All-solid-state 3D integrated batteries can reach the energy storage capacity required for future wi...
Lithium ion batteries (LIBs) have been the dominant candidate in the field of energy storage. The ev...
The zero strain Li4Ti5O12 is an attractive anode material for 3D solid state thin film batteries ...
considered as very promising solid-state lithium ion conductors and are foreseen to replace lithium ...
All-solid-state 3D integrated batteries can reach the energy storage capacity required for future wi...
Thin film solid state batteries (SSBs) are an attractive energy storage technology due to their intr...
Nanostructuring is targeted as a solution to achieve the improvements required for implementing Li-i...
All solid state 3D batteries are pursued for their increased safety and high power capabilities. At ...
All solid state 3D batteries are pursued for their increased safety and high power capabilities. At ...
Several active areas of research in novel energy storage technologies, including three-dimensional s...
This thesis outlines methodology and development of an atomic layer deposition (ALD) process for the...
In the last few years, with the advance of electrical vehicles and number of devices needing safe ba...
We demonstrate an atomic layer deposition (ALD) process for the solid electrolyte lithium phosphorou...
High quality Lithium phosphate (Li3PO4) thin films have been deposited by metal-organic chemical vap...
All-solid-state 3D integrated batteries can reach the energy storage capacity required for future wi...
Lithium ion batteries (LIBs) have been the dominant candidate in the field of energy storage. The ev...
The zero strain Li4Ti5O12 is an attractive anode material for 3D solid state thin film batteries ...
considered as very promising solid-state lithium ion conductors and are foreseen to replace lithium ...
All-solid-state 3D integrated batteries can reach the energy storage capacity required for future wi...
Thin film solid state batteries (SSBs) are an attractive energy storage technology due to their intr...
Nanostructuring is targeted as a solution to achieve the improvements required for implementing Li-i...