Proton and hydride-ion conducting oxides show potential for application in several technological devices, such as solid oxide fuel cells and batteries. However, fundamental properties pertaining to the local structure and conduction mechanisms in these materials are unclear. Such fundamental knowledge is crucial for the development of novel materials and, ultimately, for their application in technological devices. This thesis reports on investigations of local structure and dynamics in two families of hydrogen containing perovskite structured oxides, namely proton-conducting BaZrxM1-xO3Hx (M = In, Sc and Y, x ≤ 0.5) and hydride-ion conducting BaTiO3-xHx (x ≤ 0.15).For the proton conducting BaZrxM1-xO3Hx materials, the investigations focused...
Acceptor-doped barium zirconate-based proton conductors are currently receiving considerable attenti...
Perovskite-type protonic conductors are candidate electrolytes for intermediate temperature solid ox...
Oxides based on the perovskite structure exhibit a surprisingly large diversity in materials propert...
Acceptor doped proton conducting oxides are currently of large interest for their potential applicat...
Barium zirconate (BaZrO3), when substituted with trivalent acceptor ions to replace Zr4+, is a proto...
We study the local structure and vibrational dynamics of the brownmillerite-based proton conductors ...
Proton conducting oxides are currently receiving considerable attention for their present or potenti...
Proton conducting oxides can be beneficial as electrolyte materials in devices such as fuel cells, h...
Perovskite-type oxyhydrides, BaTiO3-xHx, represent a novel class of hydride ion conducting materials...
The proton local coordination environments and vibrational dynamics associated with the two order of...
This thesis focuses on investigations of the local structure and dynamics of two classes of hydrogen...
We report on an investigation of the local structure and vibrational dynamics in the brownmillerite-...
ACKNOWLEDGMENT S.F. and A.C.M. acknowledge STFC-GB for provision of beamtime at ISIS (DOI: 10.5286/I...
This thesis concerns experimental studies of hydrated perovskites and hydrated alkali thio-hydroxoge...
<p>Acceptor doped Perovskite ceramics have been shown to exhibit high levels of protonic conduction ...
Acceptor-doped barium zirconate-based proton conductors are currently receiving considerable attenti...
Perovskite-type protonic conductors are candidate electrolytes for intermediate temperature solid ox...
Oxides based on the perovskite structure exhibit a surprisingly large diversity in materials propert...
Acceptor doped proton conducting oxides are currently of large interest for their potential applicat...
Barium zirconate (BaZrO3), when substituted with trivalent acceptor ions to replace Zr4+, is a proto...
We study the local structure and vibrational dynamics of the brownmillerite-based proton conductors ...
Proton conducting oxides are currently receiving considerable attention for their present or potenti...
Proton conducting oxides can be beneficial as electrolyte materials in devices such as fuel cells, h...
Perovskite-type oxyhydrides, BaTiO3-xHx, represent a novel class of hydride ion conducting materials...
The proton local coordination environments and vibrational dynamics associated with the two order of...
This thesis focuses on investigations of the local structure and dynamics of two classes of hydrogen...
We report on an investigation of the local structure and vibrational dynamics in the brownmillerite-...
ACKNOWLEDGMENT S.F. and A.C.M. acknowledge STFC-GB for provision of beamtime at ISIS (DOI: 10.5286/I...
This thesis concerns experimental studies of hydrated perovskites and hydrated alkali thio-hydroxoge...
<p>Acceptor doped Perovskite ceramics have been shown to exhibit high levels of protonic conduction ...
Acceptor-doped barium zirconate-based proton conductors are currently receiving considerable attenti...
Perovskite-type protonic conductors are candidate electrolytes for intermediate temperature solid ox...
Oxides based on the perovskite structure exhibit a surprisingly large diversity in materials propert...