In this Perspective article we give an account of the application of total scattering methods and pair distribution function (PDF) analysis to the investigation of materials for clean energy applications such as materials for solid oxide fuel cells and lithium batteries, in order to show the power of this technique in providing new insights into the structure–property correlation in this class of materials
Small-angle scattering (SAXS or SANS) is one of the few experimental methods available for the nanom...
International audienceThe French Neutron Society (SFN) traditionally organizes annually a thematic s...
We show that the information gained in spectroscopic experiments regarding the number and distributi...
Global research activities have been driven by the quest to develop and characterize novel materials...
The development of new functional nanomaterials builds on an understanding of the intricate relation...
Over the past five years, the use of pair distribution function (PDF) methods to study local structu...
In order to solve issues such as sustainable energy sources, there is an urgent need for the develop...
The process of least-squares analysis has been applied for decades in the field of crystallography. ...
Over the years `short-range order' (SRO), whereby the local atomic arrangement differs from that of ...
We have been taking advantage of recent experimental developments, which involve utilizing diffracti...
In the last decade, the field of oxide-ion and proton conductors continued to trigger a significant ...
PhDTotal scattering can be used to study crystalline materials, whose structure presents a periodic ...
Analyzing powder X-ray diffraction data using the total scattering pair distribution function (PDF) ...
Neutron Applications in Materials for Energy collects results and conclusions of recent neutron-base...
The discovery of novel materials with desired properties is essential to the advancements of energy-...
Small-angle scattering (SAXS or SANS) is one of the few experimental methods available for the nanom...
International audienceThe French Neutron Society (SFN) traditionally organizes annually a thematic s...
We show that the information gained in spectroscopic experiments regarding the number and distributi...
Global research activities have been driven by the quest to develop and characterize novel materials...
The development of new functional nanomaterials builds on an understanding of the intricate relation...
Over the past five years, the use of pair distribution function (PDF) methods to study local structu...
In order to solve issues such as sustainable energy sources, there is an urgent need for the develop...
The process of least-squares analysis has been applied for decades in the field of crystallography. ...
Over the years `short-range order' (SRO), whereby the local atomic arrangement differs from that of ...
We have been taking advantage of recent experimental developments, which involve utilizing diffracti...
In the last decade, the field of oxide-ion and proton conductors continued to trigger a significant ...
PhDTotal scattering can be used to study crystalline materials, whose structure presents a periodic ...
Analyzing powder X-ray diffraction data using the total scattering pair distribution function (PDF) ...
Neutron Applications in Materials for Energy collects results and conclusions of recent neutron-base...
The discovery of novel materials with desired properties is essential to the advancements of energy-...
Small-angle scattering (SAXS or SANS) is one of the few experimental methods available for the nanom...
International audienceThe French Neutron Society (SFN) traditionally organizes annually a thematic s...
We show that the information gained in spectroscopic experiments regarding the number and distributi...