Apatite-type oxide-ion conductors have attracted considerable interest as potential fuel cell electrolytes. Atomistic modelling techniques have been used to investigate oxygen interstitial sites, protonic defects and water incorporation in three silicate and three germanate-based apatite-systems, namely La8Ba2(SiO4)(6)O-2, La-9.33(SiO4)(6)O-2, La-9.67(SiO4)(6)O-2.5, La8Ba2(GeO4)(6)O-2, La-9.33(GeO4)(6)O-2, and La-9.67(GeO4)(6)O-2.5. The simulation models reproduce the complex experimental structures for all of these systems. The interstitial defect simulations have examined the lowest energy configuration and confirm this site to be near the Si?GeO4 tetrahedra. The water incorporation calculations identify the O-H protonic site to be along ...
Recently, apatite-type germanates La9.33+xGe6O26+3x/2 have attracted considerable interest due to th...
The project has dealt with the synthesis and characterisation of new materials for use in solid oxid...
Apatite-type oxides ([A<sup>I</sup><sub>4</sub>][A<sup>II</sup><sub>6</sub>][(BO<sub>4</sub>)<sub>...
Apatite-type oxide-ion conductors have attracted considerable interest as potential fuel cell electr...
The crystal chemistries of a range of germanate, silicate and rhenate apatites were studied as poten...
First published as an Advance Article on the web 6th June 2003 Computer modelling techniques have be...
The aim of this study is to gain insight into the local coordination of doped apatites (e.g. La8Y2Ge...
Germanium-based apatite compounds are fast oxide-ion conductors for potential use in fuel cells. A c...
Germanium-based apatite compounds are fast oxide-ion conductors for potential use in fuel cells. A c...
Apatite-type oxides ([AI4][AII6][(BO4)6]O2), particularly those of the rare-earth silicate and germa...
Traditionally materials with the fluorite and perovskite structures have dominated the research in t...
Apatite-type oxides ([AI 4][AII 6][(BO4)6]O2), particularly those of the rare-earth silicate and ger...
Lanthanoid silicate apatite solid electrolytes contain one-dimensional channels. These materials dis...
Apatite-type rare earth silicates/germanates have attracted considerable interest recently due to th...
Materials with apatite structure have attracted interest due to their versatile applications from me...
Recently, apatite-type germanates La9.33+xGe6O26+3x/2 have attracted considerable interest due to th...
The project has dealt with the synthesis and characterisation of new materials for use in solid oxid...
Apatite-type oxides ([A<sup>I</sup><sub>4</sub>][A<sup>II</sup><sub>6</sub>][(BO<sub>4</sub>)<sub>...
Apatite-type oxide-ion conductors have attracted considerable interest as potential fuel cell electr...
The crystal chemistries of a range of germanate, silicate and rhenate apatites were studied as poten...
First published as an Advance Article on the web 6th June 2003 Computer modelling techniques have be...
The aim of this study is to gain insight into the local coordination of doped apatites (e.g. La8Y2Ge...
Germanium-based apatite compounds are fast oxide-ion conductors for potential use in fuel cells. A c...
Germanium-based apatite compounds are fast oxide-ion conductors for potential use in fuel cells. A c...
Apatite-type oxides ([AI4][AII6][(BO4)6]O2), particularly those of the rare-earth silicate and germa...
Traditionally materials with the fluorite and perovskite structures have dominated the research in t...
Apatite-type oxides ([AI 4][AII 6][(BO4)6]O2), particularly those of the rare-earth silicate and ger...
Lanthanoid silicate apatite solid electrolytes contain one-dimensional channels. These materials dis...
Apatite-type rare earth silicates/germanates have attracted considerable interest recently due to th...
Materials with apatite structure have attracted interest due to their versatile applications from me...
Recently, apatite-type germanates La9.33+xGe6O26+3x/2 have attracted considerable interest due to th...
The project has dealt with the synthesis and characterisation of new materials for use in solid oxid...
Apatite-type oxides ([A<sup>I</sup><sub>4</sub>][A<sup>II</sup><sub>6</sub>][(BO<sub>4</sub>)<sub>...