Lithium dendrite growth in lithium ion and lithium rechargeable batteries is associated with severe safety concerns. To overcome these problems, a fundamental understanding of the growth mechanism of dendrites under working conditions is needed. In this work, in situ <sup>7</sup>Li magnetic resonance (MRI) is performed on both the electrolyte and lithium metal electrodes in symmetric lithium cells, allowing the behavior of the electrolyte concentration gradient to be studied and correlated with the type and rate of microstructure growth on the Li metal electrode. For this purpose, chemical shift (CS) imaging of the metal electrodes is a particularly sensitive diagnostic method, enabling a clear distinction to be made between different types...
Lithium metal has the highest volumetric and gravimetric energy density of all negative electrode ma...
Because of the high specific capacity and low redox potential, lithium metal constitutes a promising...
The growth of lithium microstructures during battery cycling has, to date, prohibited the use of Li ...
Lithium dendrite growth in lithium ion and lithium rechargeable batteries is associated with severe ...
Lithium dendrite growth in lithium ion and lithium rechargeable batteries is associated with severe ...
Lithium dendrite growth in lithium ion and lithium rechargeable batteries is associated with severe ...
Lithium dendrite growth in lithium ion and lithium rechargeable batteries is associated with severe ...
Lithium dendrite growth in lithium ion and lithium rechargeable batteries is associated with severe ...
Lithium dendrite growth in lithium ion and lithium rechargeable batteries is associated with severe ...
Lithium metal is a promising anode material for Li-ion batteries due to its high theoretical specifi...
All-solid-state batteries potentially offer safe, high-energy-density electrochemical energy storage...
All-solid-state batteries potentially offer safe, high-energy-density electrochemical energy storage...
All-solid-state batteries potentially offer safe, high-energy-density electrochemical energy storage...
All-solid-state batteries potentially offer safe, high-energy-density electrochemical energy storage...
In this work, the formation of lithium dendrites in lithium/Li4Ti5O12 battery cells is studied using...
Lithium metal has the highest volumetric and gravimetric energy density of all negative electrode ma...
Because of the high specific capacity and low redox potential, lithium metal constitutes a promising...
The growth of lithium microstructures during battery cycling has, to date, prohibited the use of Li ...
Lithium dendrite growth in lithium ion and lithium rechargeable batteries is associated with severe ...
Lithium dendrite growth in lithium ion and lithium rechargeable batteries is associated with severe ...
Lithium dendrite growth in lithium ion and lithium rechargeable batteries is associated with severe ...
Lithium dendrite growth in lithium ion and lithium rechargeable batteries is associated with severe ...
Lithium dendrite growth in lithium ion and lithium rechargeable batteries is associated with severe ...
Lithium dendrite growth in lithium ion and lithium rechargeable batteries is associated with severe ...
Lithium metal is a promising anode material for Li-ion batteries due to its high theoretical specifi...
All-solid-state batteries potentially offer safe, high-energy-density electrochemical energy storage...
All-solid-state batteries potentially offer safe, high-energy-density electrochemical energy storage...
All-solid-state batteries potentially offer safe, high-energy-density electrochemical energy storage...
All-solid-state batteries potentially offer safe, high-energy-density electrochemical energy storage...
In this work, the formation of lithium dendrites in lithium/Li4Ti5O12 battery cells is studied using...
Lithium metal has the highest volumetric and gravimetric energy density of all negative electrode ma...
Because of the high specific capacity and low redox potential, lithium metal constitutes a promising...
The growth of lithium microstructures during battery cycling has, to date, prohibited the use of Li ...