Germanium-based apatite compounds are fast oxide-ion conductors for potential use in fuel cells. A combination of solid-state 17O NMR spectroscopy, atomistic modeling, and DFT techniques help to elucidate oxygen defect sites and novel cooperative mechanisms of ion conduction. The picture shows oxygen diffusion in the studied apatite compound from molecular dynamics simulations
Oxygen ion conductors with most symmetrical structures such as fluorite- and perovskite-related phas...
This modeling work constitutes one of the first attempts of exploitation of both Density Functional ...
Cation diffusion in ionic conducting oxides is modelled using molecular dynamics (MD). As example sy...
Germanium-based apatite compounds are fast oxide-ion conductors for potential use in fuel cells. A c...
The aim of this study is to gain insight into the local coordination of doped apatites (e.g. La8Y2Ge...
Apatite-type oxide-ion conductors have attracted considerable interest as potential fuel cell electr...
First published as an Advance Article on the web 6th June 2003 Computer modelling techniques have be...
The crystal chemistries of a range of germanate, silicate and rhenate apatites were studied as poten...
Lanthanoid silicate apatite solid electrolytes contain one-dimensional channels. These materials dis...
et al.Rare earth silicate apatites are one-dimensional channel structures that show potential as ele...
Oxygen is one of the most naturally abundant elements, making it a key constituent in many materials...
Rare earth silicate apatites are one-dimensional channel structures that show potential as electroly...
Materials displaying high oxide-ion and/or proton conductivity have been attracting considerable int...
Rare earth silicate apatites are one-dimensional channelstructures that show potential as electrolyt...
Introduction of Bi(III) into apatite-type germanate oxide ion conductors can improve the conductivit...
Oxygen ion conductors with most symmetrical structures such as fluorite- and perovskite-related phas...
This modeling work constitutes one of the first attempts of exploitation of both Density Functional ...
Cation diffusion in ionic conducting oxides is modelled using molecular dynamics (MD). As example sy...
Germanium-based apatite compounds are fast oxide-ion conductors for potential use in fuel cells. A c...
The aim of this study is to gain insight into the local coordination of doped apatites (e.g. La8Y2Ge...
Apatite-type oxide-ion conductors have attracted considerable interest as potential fuel cell electr...
First published as an Advance Article on the web 6th June 2003 Computer modelling techniques have be...
The crystal chemistries of a range of germanate, silicate and rhenate apatites were studied as poten...
Lanthanoid silicate apatite solid electrolytes contain one-dimensional channels. These materials dis...
et al.Rare earth silicate apatites are one-dimensional channel structures that show potential as ele...
Oxygen is one of the most naturally abundant elements, making it a key constituent in many materials...
Rare earth silicate apatites are one-dimensional channel structures that show potential as electroly...
Materials displaying high oxide-ion and/or proton conductivity have been attracting considerable int...
Rare earth silicate apatites are one-dimensional channelstructures that show potential as electrolyt...
Introduction of Bi(III) into apatite-type germanate oxide ion conductors can improve the conductivit...
Oxygen ion conductors with most symmetrical structures such as fluorite- and perovskite-related phas...
This modeling work constitutes one of the first attempts of exploitation of both Density Functional ...
Cation diffusion in ionic conducting oxides is modelled using molecular dynamics (MD). As example sy...