Kelvin probe force microscope (KPFM) is an AFM-based technique, which can be used for studying lithium ion batteries (LIBs). The capabilities of this technique for practical applications have been explored further in this work. A direct correlation between the local surface potential measured by KPFM and the electrochemical potential of LiNi0.80Co0.15Al0.05O2 cathode material is revealed. On the basis of this correlation, a quantitative approach to investigate the local behavior of the cathode material has been developed. We then demonstrate the potentials of this correlation by applying this methodology in three different situations. The surface inhomogeneity of the electrode is visualized and estimated from the microscale down to the nan...
Energy storage technologies are crucial in the next green-energy transition. In particular, Li-ion b...
Understanding the role of interfaces is important for improving the performance of all-solid-state l...
In this contribution, a correlative confocal Raman and scanning probe microscopy approach was implem...
The continuous demand for improved performance in energy storage is driving the evolution of Li-ion ...
Abstarct The thin film Li-ion batteries have been extensively used in micro-electronic devices due t...
An Atomic Force Microscope (AFM) is combined with a special designed glovebox system and coupled to ...
One of the main challenges in improving fast charging lithium-ion batteries is the development of su...
Lithium ion batteries are the leading candidates to fill the requirement for safe, high energy densi...
Lithium ion batteries have become one of the most important rechargeable energy storage devices used...
Nanoscale full-field (FF) transmission X-ray microscopy (TXM) and ensemble-averaged soft X-ray absor...
Next generation Li-ion batteries require improved energy densities, power output and safety to satis...
A pouch-type lithium-ion cell, with graphite anode and LiNi{sub 0.8}Co{sub 0.15}Al{sub 0.05}O{sub 2}...
The solid-electrolyte interphase (SEI) plays a key role in the stability of lithium-ion batteries as...
Correlative microscopy has been used to investigate the relationship between Li-ion conductivity and...
Correlative microscopy has been used to investigate the relationship between Li-ion conductivity and...
Energy storage technologies are crucial in the next green-energy transition. In particular, Li-ion b...
Understanding the role of interfaces is important for improving the performance of all-solid-state l...
In this contribution, a correlative confocal Raman and scanning probe microscopy approach was implem...
The continuous demand for improved performance in energy storage is driving the evolution of Li-ion ...
Abstarct The thin film Li-ion batteries have been extensively used in micro-electronic devices due t...
An Atomic Force Microscope (AFM) is combined with a special designed glovebox system and coupled to ...
One of the main challenges in improving fast charging lithium-ion batteries is the development of su...
Lithium ion batteries are the leading candidates to fill the requirement for safe, high energy densi...
Lithium ion batteries have become one of the most important rechargeable energy storage devices used...
Nanoscale full-field (FF) transmission X-ray microscopy (TXM) and ensemble-averaged soft X-ray absor...
Next generation Li-ion batteries require improved energy densities, power output and safety to satis...
A pouch-type lithium-ion cell, with graphite anode and LiNi{sub 0.8}Co{sub 0.15}Al{sub 0.05}O{sub 2}...
The solid-electrolyte interphase (SEI) plays a key role in the stability of lithium-ion batteries as...
Correlative microscopy has been used to investigate the relationship between Li-ion conductivity and...
Correlative microscopy has been used to investigate the relationship between Li-ion conductivity and...
Energy storage technologies are crucial in the next green-energy transition. In particular, Li-ion b...
Understanding the role of interfaces is important for improving the performance of all-solid-state l...
In this contribution, a correlative confocal Raman and scanning probe microscopy approach was implem...