International audienceWe report on transport and dielectric properties of molybdenum bronze. Dielectric constant measurements in blue bronze samples show a low temperature anomaly exhibiting two distinct relaxational processes. One of these peaks follows a Vogel- Fulcher law and is discussed in comparison with ferroelectric relaxors. The temperature dependence of the conductivity in the ohmic regime as well as the non-linear transport properties for ET , E , EpT can be well described by a variable range hopping mechanism in both Blue and Red Bronze. We show that transport and dielectric properties are both very sensitive to the heat treatment applied to the sample
A new family of relaxor dielectrics with the tetragonal tungsten bronze structure ( nominal composit...
The monoclinic blue-bronze, K0.30MoO3, is an anisotropic metal that undergoes a charge density wave ...
A new family of relaxor dielectrics with the tetragonal tungsten bronze structure (nominal compositi...
Abstract: When annealing molybdenum blue bronzes in the presence of a metal (Ag or Cu) a metallic re...
When annealing molybdenum blue bronzes in the presence of a metal (Ag or Cu) a metallic resistivity ...
In-depth analysis of the relaxor behaviour of Ba6MNb9O30 (M= Ga, Sc, In) tetragonal tungsten bronze ...
In-depth analysis of the relaxor behaviour of Ba6MNb9O30 (M= Ga, Sc, In) tetragonal tungsten bronze ...
The molybdenum oxide bronzes are a family of charge-density-wave (CDW) conductors with distinctive p...
We studied the structural and dielectric properties of new Tetragonal Tungsten Bronze (TTB) ceramic...
We studied the structural and dielectric properties of new Tetragonal Tungsten Bronze (TTB) ceramic...
Two different aspects of the charge-density-wave (CDW) state were studied in the quasi-onedimensiona...
Two different aspects of the charge-density-wave (CDW) state were studied in the quasi-onedimensiona...
A new family of relaxor dielectrics with the tetragonal tungsten bronze structure ( nominal composit...
The electrical properties of a family of tetragonal tungsten bronze (TTB) materials, Ba6Sc1-xInxNb9O...
The electrical properties of a family of tetragonal tungsten bronze (TTB) materials, Ba6Sc1-xInxNb9O...
A new family of relaxor dielectrics with the tetragonal tungsten bronze structure ( nominal composit...
The monoclinic blue-bronze, K0.30MoO3, is an anisotropic metal that undergoes a charge density wave ...
A new family of relaxor dielectrics with the tetragonal tungsten bronze structure (nominal compositi...
Abstract: When annealing molybdenum blue bronzes in the presence of a metal (Ag or Cu) a metallic re...
When annealing molybdenum blue bronzes in the presence of a metal (Ag or Cu) a metallic resistivity ...
In-depth analysis of the relaxor behaviour of Ba6MNb9O30 (M= Ga, Sc, In) tetragonal tungsten bronze ...
In-depth analysis of the relaxor behaviour of Ba6MNb9O30 (M= Ga, Sc, In) tetragonal tungsten bronze ...
The molybdenum oxide bronzes are a family of charge-density-wave (CDW) conductors with distinctive p...
We studied the structural and dielectric properties of new Tetragonal Tungsten Bronze (TTB) ceramic...
We studied the structural and dielectric properties of new Tetragonal Tungsten Bronze (TTB) ceramic...
Two different aspects of the charge-density-wave (CDW) state were studied in the quasi-onedimensiona...
Two different aspects of the charge-density-wave (CDW) state were studied in the quasi-onedimensiona...
A new family of relaxor dielectrics with the tetragonal tungsten bronze structure ( nominal composit...
The electrical properties of a family of tetragonal tungsten bronze (TTB) materials, Ba6Sc1-xInxNb9O...
The electrical properties of a family of tetragonal tungsten bronze (TTB) materials, Ba6Sc1-xInxNb9O...
A new family of relaxor dielectrics with the tetragonal tungsten bronze structure ( nominal composit...
The monoclinic blue-bronze, K0.30MoO3, is an anisotropic metal that undergoes a charge density wave ...
A new family of relaxor dielectrics with the tetragonal tungsten bronze structure (nominal compositi...