The large interfacial resistance between electrolyte and electrodes poses a significant roadblock for the application of all‐solid‐state batteries. The formation of interfacial phases (interphases) has been identified as one of the most significant sources for such high resistance. Therefore, studying the mechanism of interphase formation, along with investigating its effect on ionic conductivity, could lead to the discovery of avenues towards designing high‐performance all‐solid‐state batteries. In this work, we studied the interphase formation in the perovskite electrolyte Li0.33La0.57TiO3 (LLTO) and spinel cathode LiMn2O4 (LMO) pair by co‐sintering experiments via spark plasma sintering (SPS), as well as conventional sintering. Although ...
Undergraduate Honor Research ScholarshipWhile the development of conventional lithium-ion (Li-ion) b...
Benefiting from extremely high shear modulus and high ionic transference number, solid electrolytes ...
Hybrid solid-state batteries using a bilayer of ceramic and solid polymer electrolytes may offer adv...
The interface between cathode and electrolyte is a significant source of large interfacial resistanc...
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...
© 2020 American Chemical Society Solid-state batteries offer higher energy density and enhanced safe...
Nanocomposites of a lithium ion conductor Li1.3Al 0.3Ti1.7(PO4)3 and electrode materials (TiO2 and F...
The interfaces between many solid-state electrolytes (SSEs) and lithium metal are (electro)chemical...
Hybrid solid-state batteries using a bilayer of ceramic and solid polymer electrolytes may offer adv...
Benefiting from extremely high shear modulus and high ionic transference number, solid electrolytes ...
Benefiting from extremely high shear modulus and high ionic transference number, solid electrolytes ...
Benefiting from extremely high shear modulus and high ionic transference number, solid electrolytes ...
Most commercial lithium-ion batteries and other types of batteries rely on liquid electrolytes, whic...
Benefiting from extremely high shear modulus and high ionic transference number, solid electrolytes ...
Undergraduate Honor Research ScholarshipWhile the development of conventional lithium-ion (Li-ion) b...
Benefiting from extremely high shear modulus and high ionic transference number, solid electrolytes ...
Hybrid solid-state batteries using a bilayer of ceramic and solid polymer electrolytes may offer adv...
The interface between cathode and electrolyte is a significant source of large interfacial resistanc...
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...
© 2020 American Chemical Society Solid-state batteries offer higher energy density and enhanced safe...
Nanocomposites of a lithium ion conductor Li1.3Al 0.3Ti1.7(PO4)3 and electrode materials (TiO2 and F...
The interfaces between many solid-state electrolytes (SSEs) and lithium metal are (electro)chemical...
Hybrid solid-state batteries using a bilayer of ceramic and solid polymer electrolytes may offer adv...
Benefiting from extremely high shear modulus and high ionic transference number, solid electrolytes ...
Benefiting from extremely high shear modulus and high ionic transference number, solid electrolytes ...
Benefiting from extremely high shear modulus and high ionic transference number, solid electrolytes ...
Most commercial lithium-ion batteries and other types of batteries rely on liquid electrolytes, whic...
Benefiting from extremely high shear modulus and high ionic transference number, solid electrolytes ...
Undergraduate Honor Research ScholarshipWhile the development of conventional lithium-ion (Li-ion) b...
Benefiting from extremely high shear modulus and high ionic transference number, solid electrolytes ...
Hybrid solid-state batteries using a bilayer of ceramic and solid polymer electrolytes may offer adv...