Next generation Li-ion batteries require improved energy densities, power output and safety to satisfy the demands of emerging technologies. All solid state 3D thin-film batteries (ASB) based on nanoionics are considered as frontrunners to enable all this. In order to facilitate the introduction of this new architecture, a homogeneous electrochemical activity and a high ionic diffusivity of the electrodes is key. However, nanometer-resolved techniques to probe structural, electrical and electrochemical properties of the battery components are still limited. Here we propose a study that combines conductive atomic force microscopy (C-AFM) and secondary ion mass spectrometry (SIMS) for structural and electrical characterization. In addition, a...
Kelvin probe force microscope (KPFM) is an AFM-based technique, which can be used for studying lithi...
The present review analyses the recent literature on the combined use of X-ray microscopy (XRM) and ...
Thin-film batteries often contain oxides in the anode, cathode, and electrolyte materials. In-operan...
The continuous demand for improved performance in energy storage is driving the evolution of Li-ion ...
One of the main challenges in improving fast charging lithium-ion batteries is the development of su...
Next generation lithium-ion batteries will take on a wide variety of roles to meet the increased req...
The continuing development of mobile electronic devices and the increasing importance of electric ve...
Lithium ion batteries have become one of the most important rechargeable energy storage devices used...
Understanding the role of interfaces is important for improving the performance of all-solid-state l...
In this work, material-sensitive atomic force microscopy (AFM) techniques were used to analyse the c...
Lithium ion batteries are the leading candidates to fill the requirement for safe, high energy densi...
Energy storage technologies are crucial in the next green-energy transition. In particular, Li-ion b...
The work was financially supported by the Portuguese Foundation for Science and Technology (FCT) wit...
Understanding and improving the behavior of interfaces is essential to the development of safer and ...
All-solid-state lithium-ion batteries (LIBs) are one of the promising candidates to overcome some is...
Kelvin probe force microscope (KPFM) is an AFM-based technique, which can be used for studying lithi...
The present review analyses the recent literature on the combined use of X-ray microscopy (XRM) and ...
Thin-film batteries often contain oxides in the anode, cathode, and electrolyte materials. In-operan...
The continuous demand for improved performance in energy storage is driving the evolution of Li-ion ...
One of the main challenges in improving fast charging lithium-ion batteries is the development of su...
Next generation lithium-ion batteries will take on a wide variety of roles to meet the increased req...
The continuing development of mobile electronic devices and the increasing importance of electric ve...
Lithium ion batteries have become one of the most important rechargeable energy storage devices used...
Understanding the role of interfaces is important for improving the performance of all-solid-state l...
In this work, material-sensitive atomic force microscopy (AFM) techniques were used to analyse the c...
Lithium ion batteries are the leading candidates to fill the requirement for safe, high energy densi...
Energy storage technologies are crucial in the next green-energy transition. In particular, Li-ion b...
The work was financially supported by the Portuguese Foundation for Science and Technology (FCT) wit...
Understanding and improving the behavior of interfaces is essential to the development of safer and ...
All-solid-state lithium-ion batteries (LIBs) are one of the promising candidates to overcome some is...
Kelvin probe force microscope (KPFM) is an AFM-based technique, which can be used for studying lithi...
The present review analyses the recent literature on the combined use of X-ray microscopy (XRM) and ...
Thin-film batteries often contain oxides in the anode, cathode, and electrolyte materials. In-operan...