Temperature dependent extended X-ray absorption fine structure (EXAFS) measurements give original information on local structure and dynamics of materials with framework structure, exhibiting negative thermal expansion. By proper cumulant data analyses, the temperature dependence of the nearest neighbours distance can be directly measured and the degree of rigidity of basic structural units monitored. Recent results obtained for Ag2O show that the contraction of the lattice parameter is accompanied by the expansion of the 1st-shell Ag\u2013O distance, and that the deformation of the Ag4O tetrahedral units is not negligible
Accurate temperature-dependent EXAFS measurements can give original information on the correlation o...
The extended x-ray absorption fine structure (EXAFS) has been measured at both the K edges of cadmiu...
The thermal expansion of two isostructural oxides, Cu2O and Ag2O, has been measured from 10 K to the...
The local thermal behavior of the Ag2O framework structure has been studied by extended x-ray absorp...
Copper and silver oxide share the rather unusual cuprite structure, formed by two interpenetrating n...
High-resolution x-ray powder diffraction and extended x-ray-absorption fine-structure EXAFS measurem...
EXAFS measures the thermal variation of average interatomic distances, while Bragg diffraction and d...
Cuprite-type oxides (Cu2O and Ag2O) are framework structures composed by two interpenetrated network...
Accurate temperature-dependent EXAFS measurements can give original information on the correlation o...
EXAFS can represent a powerful probe of the local behaviour of negative thermal expansion (NTE) mate...
The low-temperature phase-transition of silver oxide (Ag2O) has been investigated by extended x-ray ...
A great progress has been made in the last years in the XAFS studies of thermal and structural disor...
The thermal expansion behaviour of silver has been studied in an extended temperature range, viz. fr...
The investigations on the origin of negative thermal expansion (NTE) in crystals can greatly benefit...
Extended X-ray absorption fine structure (EXAFS) can give information on the local dynamical behavio...
Accurate temperature-dependent EXAFS measurements can give original information on the correlation o...
The extended x-ray absorption fine structure (EXAFS) has been measured at both the K edges of cadmiu...
The thermal expansion of two isostructural oxides, Cu2O and Ag2O, has been measured from 10 K to the...
The local thermal behavior of the Ag2O framework structure has been studied by extended x-ray absorp...
Copper and silver oxide share the rather unusual cuprite structure, formed by two interpenetrating n...
High-resolution x-ray powder diffraction and extended x-ray-absorption fine-structure EXAFS measurem...
EXAFS measures the thermal variation of average interatomic distances, while Bragg diffraction and d...
Cuprite-type oxides (Cu2O and Ag2O) are framework structures composed by two interpenetrated network...
Accurate temperature-dependent EXAFS measurements can give original information on the correlation o...
EXAFS can represent a powerful probe of the local behaviour of negative thermal expansion (NTE) mate...
The low-temperature phase-transition of silver oxide (Ag2O) has been investigated by extended x-ray ...
A great progress has been made in the last years in the XAFS studies of thermal and structural disor...
The thermal expansion behaviour of silver has been studied in an extended temperature range, viz. fr...
The investigations on the origin of negative thermal expansion (NTE) in crystals can greatly benefit...
Extended X-ray absorption fine structure (EXAFS) can give information on the local dynamical behavio...
Accurate temperature-dependent EXAFS measurements can give original information on the correlation o...
The extended x-ray absorption fine structure (EXAFS) has been measured at both the K edges of cadmiu...
The thermal expansion of two isostructural oxides, Cu2O and Ag2O, has been measured from 10 K to the...