Hybrid solid-state batteries using a bilayer of ceramic and solid polymer electrolytes may offer advantages over using a single type of solid electrolyte alone. However, the impedance to Li+ transport across interfaces between different electrolytes can be high. It is important to determine the resistance to Li+ transport across these heteroionic interfaces, as well as to understand the underlying causes of these resistances; in particular, whether chemical interphase formation contributes to giving high resistances, as in the case of ceramic/liquid electrolyte interfaces. In this work, two ceramic electrolytes, Li3PS4 (LPS) and Li6.5La3Zr1.5Ta0.5O12 (LLZTO), were interfaced with the solid polymer electrolyte PEO10:LiTFSI and the interfacia...
All solid state batteries are attracting interests as next generation energy storage devices. Howeve...
In this work, we report methods to quantify and minimize the interfacial resistance for Li ion trans...
The interface between cathode and electrolyte is a significant source of large interfacial resistanc...
Hybrid solid-state batteries using a bilayer of ceramic and solid polymer electrolytes may offer adv...
Large, dominating resistances to lithium transport at interfaces between polymeric and ceramic elect...
The development of commercial solid-state batteries has to date been hindered by the individual limi...
Lithium-ion batteries (LIB) have been widely applied to portable electronic devices in the past deca...
Lithium-ion batteries (LIB) have been widely applied to portable electronic devices in the past deca...
Model systems for electrochemical impedance spectroscopy (EIS) studies of solid-state electrolytes b...
The performance of rechargeable batteries based on metallic or inserted lithium anodes is strongly d...
An advantageous solid electrolyte/liquid electrolyte interface is crucial for the implementation of ...
Direct integration of a metallic lithium anode with the ceramic Li1.3Al0.3Ti1.7(PO4)3 (LATP) electro...
An advantageous solid electrolyte/liquid electrolyte interface is crucial for the implementation of ...
The potential of all-solid-state batteries with lithium metal anodes to be safer, more energy dense ...
Composites of inorganic lithium ion conducting glass ceramics (LICGCs) and organic polymers may prov...
All solid state batteries are attracting interests as next generation energy storage devices. Howeve...
In this work, we report methods to quantify and minimize the interfacial resistance for Li ion trans...
The interface between cathode and electrolyte is a significant source of large interfacial resistanc...
Hybrid solid-state batteries using a bilayer of ceramic and solid polymer electrolytes may offer adv...
Large, dominating resistances to lithium transport at interfaces between polymeric and ceramic elect...
The development of commercial solid-state batteries has to date been hindered by the individual limi...
Lithium-ion batteries (LIB) have been widely applied to portable electronic devices in the past deca...
Lithium-ion batteries (LIB) have been widely applied to portable electronic devices in the past deca...
Model systems for electrochemical impedance spectroscopy (EIS) studies of solid-state electrolytes b...
The performance of rechargeable batteries based on metallic or inserted lithium anodes is strongly d...
An advantageous solid electrolyte/liquid electrolyte interface is crucial for the implementation of ...
Direct integration of a metallic lithium anode with the ceramic Li1.3Al0.3Ti1.7(PO4)3 (LATP) electro...
An advantageous solid electrolyte/liquid electrolyte interface is crucial for the implementation of ...
The potential of all-solid-state batteries with lithium metal anodes to be safer, more energy dense ...
Composites of inorganic lithium ion conducting glass ceramics (LICGCs) and organic polymers may prov...
All solid state batteries are attracting interests as next generation energy storage devices. Howeve...
In this work, we report methods to quantify and minimize the interfacial resistance for Li ion trans...
The interface between cathode and electrolyte is a significant source of large interfacial resistanc...