The critical region determining the performance and lifetime of solid oxide electrochemical systems is normally at the electrode side of the electrode/electrolyte interface. Typically this electrochemically active region only extends a few micrometres and for best performance involves intricate structures and nanocomposites. Much of the most exciting recent research involves understanding processes occurring at this interface and in developing new means of controlling the structure at this interface on the nanoscale. Here we consider in detail the diverse range of materials architectures that may be involved, describe the evolution of these interface structures and finally explore the new chemistries that allow control and manipulation of t...
Mixed ionic electronic conductors (MIEC) are pivotal materials in a number of electrochemical device...
Electrochemical energy conversion and storage are central to developing future renewable energy syst...
Abstract Electrochemical reactions typically occur at the interface between a solid electrode and a ...
The critical region determining the performance and lifetime of solid oxide electrochemical systems ...
The most important electrochemical reactions in a solid oxide fuel cell or electrolyser take place w...
(continued on next page) Oxides and their tailored structures are at the heart of electrochemical en...
High temperature solid oxide cells (SOCs) consisted of solid oxide fuel cells (SOFCs) and solid oxid...
Utilization of carbon dioxide from industrial waste streams offers significant reductions in global ...
In high temperature solid oxide fuel cells (SOFCs), electrode/electrolyte interfaces play a critical...
Carbon dioxide obtained from industrial waste streams can be reduced to deliver significant reductio...
Yttria-stabilized zirconia (YSZ) is a subject of a number of experimental and theoretical investigat...
My research has been focused on characterization and control of the interfacial processes in advance...
AbstractPerformance durability is one of the essential requirements for solid oxide fuel cell materi...
Utilization of carbon dioxide from industrial waste streams offers significant reductions in global ...
The performance of a solid-state electrochemical system depends critically on the transport process ...
Mixed ionic electronic conductors (MIEC) are pivotal materials in a number of electrochemical device...
Electrochemical energy conversion and storage are central to developing future renewable energy syst...
Abstract Electrochemical reactions typically occur at the interface between a solid electrode and a ...
The critical region determining the performance and lifetime of solid oxide electrochemical systems ...
The most important electrochemical reactions in a solid oxide fuel cell or electrolyser take place w...
(continued on next page) Oxides and their tailored structures are at the heart of electrochemical en...
High temperature solid oxide cells (SOCs) consisted of solid oxide fuel cells (SOFCs) and solid oxid...
Utilization of carbon dioxide from industrial waste streams offers significant reductions in global ...
In high temperature solid oxide fuel cells (SOFCs), electrode/electrolyte interfaces play a critical...
Carbon dioxide obtained from industrial waste streams can be reduced to deliver significant reductio...
Yttria-stabilized zirconia (YSZ) is a subject of a number of experimental and theoretical investigat...
My research has been focused on characterization and control of the interfacial processes in advance...
AbstractPerformance durability is one of the essential requirements for solid oxide fuel cell materi...
Utilization of carbon dioxide from industrial waste streams offers significant reductions in global ...
The performance of a solid-state electrochemical system depends critically on the transport process ...
Mixed ionic electronic conductors (MIEC) are pivotal materials in a number of electrochemical device...
Electrochemical energy conversion and storage are central to developing future renewable energy syst...
Abstract Electrochemical reactions typically occur at the interface between a solid electrode and a ...