Electrodeposited metallic lithium is an ideal negative battery electrode, but nonuniform microstructure evolution during cycling leads to degradation and safety issues. A better understanding of the Li plating and stripping processes is needed to enable practical Li-metal batteries. Here we use a custom microfabricated, sealed liquid cell for <i>in situ</i> scanning transmission electron microscopy (STEM) to image the first few cycles of lithium electrodeposition/dissolution in liquid aprotic electrolyte at submicron resolution. Cycling at current densities from 1 to 25 mA/cm<sup>2</sup> leads to variations in grain structure, with higher current densities giving a more needle-like, higher surface area deposit. The effect of the electron be...
An operando electrochemical stage for the transmission electron microscope has been configured to fo...
Direct observation of the nanostructural evolution of electrode materials is critical to understandi...
The growth of electrodeposited lithium microstructures on metallic lithium electrodes has prevented ...
Electrodeposited metallic lithium is an ideal negative battery electrode, but nonuniform microstruct...
Battery cycle life is directly influenced by the microstructural changes occurring in the electrodes...
The solid electrolyte interphase (SEI), a complex layer that forms over the surface of electrodes ex...
Lithium dendrite formation is a major safety concern existing in Li-ion and Li-metal batteries. In s...
The performance characteristics of Li-ion batteries are intrinsically linked to evolving nanoscale i...
Development of novel electrolytes with increased electrochemical stability is critical for the next ...
Operando analyses have provided several breakthroughs in the construction of high-performance materi...
Limited understanding of the lithium Li nucleation and growth mechanism has hampered the implement...
The ability to directly resolve the dynamic processes that occur at the electrode-electrolyte interf...
Understanding and improving the behavior of interfaces is essential to the development of safer and ...
In situ transmission electron microscopy (TEM) has emerged as a promising characterization tool for ...
Lithium metal has been considered the "holy grail" anode material for rechargeable batteries despite...
An operando electrochemical stage for the transmission electron microscope has been configured to fo...
Direct observation of the nanostructural evolution of electrode materials is critical to understandi...
The growth of electrodeposited lithium microstructures on metallic lithium electrodes has prevented ...
Electrodeposited metallic lithium is an ideal negative battery electrode, but nonuniform microstruct...
Battery cycle life is directly influenced by the microstructural changes occurring in the electrodes...
The solid electrolyte interphase (SEI), a complex layer that forms over the surface of electrodes ex...
Lithium dendrite formation is a major safety concern existing in Li-ion and Li-metal batteries. In s...
The performance characteristics of Li-ion batteries are intrinsically linked to evolving nanoscale i...
Development of novel electrolytes with increased electrochemical stability is critical for the next ...
Operando analyses have provided several breakthroughs in the construction of high-performance materi...
Limited understanding of the lithium Li nucleation and growth mechanism has hampered the implement...
The ability to directly resolve the dynamic processes that occur at the electrode-electrolyte interf...
Understanding and improving the behavior of interfaces is essential to the development of safer and ...
In situ transmission electron microscopy (TEM) has emerged as a promising characterization tool for ...
Lithium metal has been considered the "holy grail" anode material for rechargeable batteries despite...
An operando electrochemical stage for the transmission electron microscope has been configured to fo...
Direct observation of the nanostructural evolution of electrode materials is critical to understandi...
The growth of electrodeposited lithium microstructures on metallic lithium electrodes has prevented ...