Cuprite (Cu2O) is a low thermal expansion material with a negative thermal expansion coefficient below room temperature. Its peculiar thermal behaviour encompasses the increase of the shear modulus with increasing temperature, and the presence of rather intense symmetry-forbidden eeo reflections below room temperature. The thermal expansion of cuprite was studied at low temperature (between 5 and 298 K) by means of high-resolution (10-5 Å) X-ray powder diffraction at European Synchrotron Radiation Facility (Grenoble, BM16) and extended X-ray absorption fine structure (EXAFS) (BM29). Negative thermal expansion is confirmed up to 200 K, by EXAFS as well as by XRD measurements, and no sign of transition was found in XRD data. The comparison be...
EXAFS can represent a powerful probe of the local behaviour of negative thermal expansion (NTE) mate...
Phonons, or quantized normal modes of crystal vibrations, are responsible for much of the thermophys...
Cubic cuprous oxide, Cu2O, is characterized by a peculiar structural response to temperature: it sho...
Cuprite (Cu2O) is a low thermal expansion material with a negative thermal expansion coefficient bel...
Cuprite-type oxides (Cu2O and Ag2O) are framework structures composed by two interpenetrated network...
The thermal expansion of two isostructural oxides, Cu2O and Ag2O, has been measured from 10 K to the...
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) measur...
Copper (I) and silver (I) oxides crystallize with the same structure, and both show a wide range of ...
Accurate temperature-dependent EXAFS measurements can give original information on the correlation o...
Extended X-ray absorption fine structure (EXAFS) can give information on the local dynamical behavio...
Copper (I) and silver (I) oxides crystallize with the same structure, and both show a wide range of ...
Accurate temperature-dependent EXAFS measurements can give original information on the correlation o...
The investigations on the origin of negative thermal expansion (NTE) in crystals can greatly benefit...
Extended x-ray absorption fine structure has been measured at the K edge of copper in CuScO2 and CuL...
EXAFS can represent a powerful probe of the local behaviour of negative thermal expansion (NTE) mate...
Phonons, or quantized normal modes of crystal vibrations, are responsible for much of the thermophys...
Cubic cuprous oxide, Cu2O, is characterized by a peculiar structural response to temperature: it sho...
Cuprite (Cu2O) is a low thermal expansion material with a negative thermal expansion coefficient bel...
Cuprite-type oxides (Cu2O and Ag2O) are framework structures composed by two interpenetrated network...
The thermal expansion of two isostructural oxides, Cu2O and Ag2O, has been measured from 10 K to the...
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) measur...
Copper (I) and silver (I) oxides crystallize with the same structure, and both show a wide range of ...
Accurate temperature-dependent EXAFS measurements can give original information on the correlation o...
Extended X-ray absorption fine structure (EXAFS) can give information on the local dynamical behavio...
Copper (I) and silver (I) oxides crystallize with the same structure, and both show a wide range of ...
Accurate temperature-dependent EXAFS measurements can give original information on the correlation o...
The investigations on the origin of negative thermal expansion (NTE) in crystals can greatly benefit...
Extended x-ray absorption fine structure has been measured at the K edge of copper in CuScO2 and CuL...
EXAFS can represent a powerful probe of the local behaviour of negative thermal expansion (NTE) mate...
Phonons, or quantized normal modes of crystal vibrations, are responsible for much of the thermophys...
Cubic cuprous oxide, Cu2O, is characterized by a peculiar structural response to temperature: it sho...