Nanomaterials, materials with particle dimensions less than 100 nm, show a range of unusual properties when compared with their bulk counterparts. Atomic transport is one of these properties and nanomaterials have been reported as having exceptionally high diffusion coefficients. In the case of ionic materials the atomic transport is important in a number of technological applications where they are used as solid electrolytes, for example in sensors, batteries and fuel cells. Hence ionic nanomaterials often referred to as nanoionics, can offer the means of producing electrolytes with improved performance. This contribution will examine the mechanisms of atomic transport in nanoionics in two model materials, zirconia and lithium niobate. Sin...
In many cases nanocrystalline materials, prepared through high-energy ball milling, reveal enhanced ...
This paper describes the mechanisms of ion and electron transport in nanostructured insertion electr...
Nanoconfined ions have dramatically different local environments compared to the bulk, which profoun...
Enhanced atomic migration was an early observation from experimental studies into nanocrystalline so...
Ceramics with nm-sized dimensions are widely used in various applications such as batteries, fuel ce...
This contribution reviews the current state of knowledge of atomic transport in ionic materials, a d...
The blocking of ion transport at interfaces strongly limits the performance of electrochemical nanod...
This article reports on Li self-diffusion in lithium containing metal oxide compounds. Case studies ...
The phenomenon of ion migration in solids forms the basis for a wide variety of electrochemical appl...
With the advancement of nanofabrication techniques and the growth and synthesis of novel low-dimensi...
With the advancement of nanofabrication techniques and the growth and synthesis of novel low-dimensi...
Battery performance and its fade are determined by various aspects such as the transport of ions and...
Ionic dynamics underpin the functionalities of a broad spectrum of materials and devices ranging fro...
There is probably no class of materials more varied, more widely used, or more ubiquitous than metal...
Interface engineering and the study of diffusion and transport processes through and along interfaci...
In many cases nanocrystalline materials, prepared through high-energy ball milling, reveal enhanced ...
This paper describes the mechanisms of ion and electron transport in nanostructured insertion electr...
Nanoconfined ions have dramatically different local environments compared to the bulk, which profoun...
Enhanced atomic migration was an early observation from experimental studies into nanocrystalline so...
Ceramics with nm-sized dimensions are widely used in various applications such as batteries, fuel ce...
This contribution reviews the current state of knowledge of atomic transport in ionic materials, a d...
The blocking of ion transport at interfaces strongly limits the performance of electrochemical nanod...
This article reports on Li self-diffusion in lithium containing metal oxide compounds. Case studies ...
The phenomenon of ion migration in solids forms the basis for a wide variety of electrochemical appl...
With the advancement of nanofabrication techniques and the growth and synthesis of novel low-dimensi...
With the advancement of nanofabrication techniques and the growth and synthesis of novel low-dimensi...
Battery performance and its fade are determined by various aspects such as the transport of ions and...
Ionic dynamics underpin the functionalities of a broad spectrum of materials and devices ranging fro...
There is probably no class of materials more varied, more widely used, or more ubiquitous than metal...
Interface engineering and the study of diffusion and transport processes through and along interfaci...
In many cases nanocrystalline materials, prepared through high-energy ball milling, reveal enhanced ...
This paper describes the mechanisms of ion and electron transport in nanostructured insertion electr...
Nanoconfined ions have dramatically different local environments compared to the bulk, which profoun...