Conjugated alkali metal dicarboxylates have recently received attention for applications as organic anode materials in lithium- and sodium-ion batteries. In order to understand and optimise these materials, it is important to be able to characterise both the long-range and local aspects of the crystal structure, which may change during battery cycling. Furthermore, some materials can display polymorphism or hydration behaviour. NMR crystallography, which combines long-range crystallographic information from diffraction with local information from solid-state NMR via interpretation aided by DFT calculations, is one such approach, but this has not yet been widely applied to conjugated dicarboxylates. In this work, we evaluate the application ...
Portable electronic devices, electric vehicles and stationary energy storage applications, which enc...
The full realization of a renewable energy strategy hinges upon electrical energy storage (EES). EES...
The properties of a lithium ion battery (LIB) are determined by the interplay of its components. In ...
Conjugated alkali metal dicarboxylates have recently received attention for applications as organic ...
International audienceTwo novel solid-state sodium battery electrolyte materials (a polymerised ioni...
To improve lithium and sodium ion battery technology, it is imperative to understand how the propert...
The development of novel electrolyte materials for lithium ion batteries has been the focus of much ...
Organic-based materials are potential candidates for a new generation of sustainable and environment...
International audienceRecently, different and unexpected electrochemical behaviours have been demons...
We examined the state of sodium electrochemically inserted in HC prepared at 700–2000 °C using solid...
A known strategy for improving the properties of layered oxide electrodes in sodium-ion batteries is...
Structural processes occurring upon electrochemical cycling in P2-Nax[LiyNizMn1-y-z]O2 (x, y, z ≤ 1)...
Despite the abundance of hydrates, their multifaceted nature and hydration/dehydration behaviour is ...
A known strategy for improving the properties of layered oxide electrodes in sodium-ion batteries is...
Due to the great demands within the energy community, the need to develop materials that can signifi...
Portable electronic devices, electric vehicles and stationary energy storage applications, which enc...
The full realization of a renewable energy strategy hinges upon electrical energy storage (EES). EES...
The properties of a lithium ion battery (LIB) are determined by the interplay of its components. In ...
Conjugated alkali metal dicarboxylates have recently received attention for applications as organic ...
International audienceTwo novel solid-state sodium battery electrolyte materials (a polymerised ioni...
To improve lithium and sodium ion battery technology, it is imperative to understand how the propert...
The development of novel electrolyte materials for lithium ion batteries has been the focus of much ...
Organic-based materials are potential candidates for a new generation of sustainable and environment...
International audienceRecently, different and unexpected electrochemical behaviours have been demons...
We examined the state of sodium electrochemically inserted in HC prepared at 700–2000 °C using solid...
A known strategy for improving the properties of layered oxide electrodes in sodium-ion batteries is...
Structural processes occurring upon electrochemical cycling in P2-Nax[LiyNizMn1-y-z]O2 (x, y, z ≤ 1)...
Despite the abundance of hydrates, their multifaceted nature and hydration/dehydration behaviour is ...
A known strategy for improving the properties of layered oxide electrodes in sodium-ion batteries is...
Due to the great demands within the energy community, the need to develop materials that can signifi...
Portable electronic devices, electric vehicles and stationary energy storage applications, which enc...
The full realization of a renewable energy strategy hinges upon electrical energy storage (EES). EES...
The properties of a lithium ion battery (LIB) are determined by the interplay of its components. In ...