Benefiting from extremely high shear modulus and high ionic transference number, solid electrolytes are promising candidates to address both the dendrite-growth and electrolyte-consumption problems inherent to the widely adopted liquid-phase electrolyte batteries. However, solid electrolyte/electrode interfaces present high resistance and complicated morphology, hampering the development of solid-state battery systems, while requiring advanced analysis for rational improvement. Here, we employ an ultrasensitive three-dimensional (3D) chemical analysis to uncover the dynamic formation of interphases at the solid electrolyte/electrode interface. While the formation of interphases widens the electrochemical window, their electronic and ionic c...
The interfacial decomposition products forming the so-called solid–electrolyte interphase (SEI) sign...
Lithium metal anodes are considered as the "Holy Grail" to achieve high energy density of rechargeab...
Significant advances in the amount of electrical energy that can be stored in electrochemical cells,...
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 ...
Benefiting from extremely high shear modulus and high ionic transference number, solid electrolytes ...
With the fullness of time, metallic lithium (Li) as an anode could become highly promising for high-...
Solid-state batteries promise to revolutionise battery safety and energy density. However, there rem...
Most commercial lithium-ion batteries and other types of batteries rely on liquid electrolytes, whic...
Advances in understanding of the basic science and engineering principles the underpin performance o...
All-solid-state batteries (ASSBs) have attracted enormous attention as one of the critical future te...
Utilization of lithium (Li) metal anode is highly desirable for achieving high energy density batter...
Lithium metal anodes are considered as the "Holy Grail" to achieve high energy density of rechargeab...
All-solid-state batteries (ASSBs) have attracted enormous attention as one of the critical future te...
The interfacial decomposition products forming the so-called solid–electrolyte interphase (SEI) sign...
Lithium metal anodes are considered as the "Holy Grail" to achieve high energy density of rechargeab...
Significant advances in the amount of electrical energy that can be stored in electrochemical cells,...
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 ...
Benefiting from extremely high shear modulus and high ionic transference number, solid electrolytes ...
With the fullness of time, metallic lithium (Li) as an anode could become highly promising for high-...
Solid-state batteries promise to revolutionise battery safety and energy density. However, there rem...
Most commercial lithium-ion batteries and other types of batteries rely on liquid electrolytes, whic...
Advances in understanding of the basic science and engineering principles the underpin performance o...
All-solid-state batteries (ASSBs) have attracted enormous attention as one of the critical future te...
Utilization of lithium (Li) metal anode is highly desirable for achieving high energy density batter...
Lithium metal anodes are considered as the "Holy Grail" to achieve high energy density of rechargeab...
All-solid-state batteries (ASSBs) have attracted enormous attention as one of the critical future te...
The interfacial decomposition products forming the so-called solid–electrolyte interphase (SEI) sign...
Lithium metal anodes are considered as the "Holy Grail" to achieve high energy density of rechargeab...
Significant advances in the amount of electrical energy that can be stored in electrochemical cells,...