Cuprite-type oxides (Cu2O and Ag2O) are framework structures composed by two interpenetrated networks of metal-sharing M4O tetrahedra (M = Cu, Ag). Both compounds exhibit a peculiar negative thermal expansion (NTE) behaviour over an extended temperature range (9 240 K for Cu2O, 30-470 K for Ag2O). High-accuracy synchrotron powder diffraction and EXAFS measurements were performed from 10 K up to the decomposition temperature to understand the nature of the NTE effects. The critical comparison of the diffraction and absorption results concerning the temperature dependence of the interatomic distances and of the atomic vibrational parameters proves to be fundamental in defining the local dynamics of the atoms in the structure. Both techniques ...
The investigations on the origin of negative thermal expansion (NTE) in crystals can greatly benefit...
Temperature dependent extended X-ray absorption fine structure (EXAFS) measurements give original in...
Negative thermal expansion (NTE) behaviors have been observed in various types of compounds. The ach...
Cuprite-type oxides (Cu2O and Ag2O) are framework structures composed by two interpenetrated network...
High-resolution x-ray powder diffraction and extended x-ray-absorption fine-structure (EXAFS) measur...
Copper and silver oxide share the rather unusual cuprite structure, formed by two interpenetrating n...
The thermal expansion of two isostructural oxides, Cu2O and Ag2O, has been measured from 10 K to the...
Copper (I) and silver (I) oxides crystallize with the same structure, and both show a wide range of ...
Copper (I) and silver (I) oxides crystallize with the same structure, and both show a wide range of ...
The local thermal behavior of the Ag2O framework structure has been studied by extended x-ray absorp...
Cuprite (Cu2O) is a low thermal expansion material with a negative thermal expansion coefficient bel...
EXAFS can represent a powerful probe of the local behaviour of negative thermal expansion (NTE) mate...
Extended x-ray absorption fine structure has been measured at the K edge of copper in CuScO2 and CuL...
The negative thermal expansion (NTE) mechanism in Cu2O has been characterized via mapping of differe...
The investigations on the origin of negative thermal expansion (NTE) in crystals can greatly benefit...
Temperature dependent extended X-ray absorption fine structure (EXAFS) measurements give original in...
Negative thermal expansion (NTE) behaviors have been observed in various types of compounds. The ach...
Cuprite-type oxides (Cu2O and Ag2O) are framework structures composed by two interpenetrated network...
High-resolution x-ray powder diffraction and extended x-ray-absorption fine-structure (EXAFS) measur...
Copper and silver oxide share the rather unusual cuprite structure, formed by two interpenetrating n...
The thermal expansion of two isostructural oxides, Cu2O and Ag2O, has been measured from 10 K to the...
Copper (I) and silver (I) oxides crystallize with the same structure, and both show a wide range of ...
Copper (I) and silver (I) oxides crystallize with the same structure, and both show a wide range of ...
The local thermal behavior of the Ag2O framework structure has been studied by extended x-ray absorp...
Cuprite (Cu2O) is a low thermal expansion material with a negative thermal expansion coefficient bel...
EXAFS can represent a powerful probe of the local behaviour of negative thermal expansion (NTE) mate...
Extended x-ray absorption fine structure has been measured at the K edge of copper in CuScO2 and CuL...
The negative thermal expansion (NTE) mechanism in Cu2O has been characterized via mapping of differe...
The investigations on the origin of negative thermal expansion (NTE) in crystals can greatly benefit...
Temperature dependent extended X-ray absorption fine structure (EXAFS) measurements give original in...
Negative thermal expansion (NTE) behaviors have been observed in various types of compounds. The ach...