The onset of classic ferroelectric behavior in tetragonal tungsten bronze-like dielectrics Ba2LaxNd1-xNb3Ti2O15 was attributed to a strong coupling between local polar displacements and a certain type of octahedral tilting. The ferroelectric phase transition in these systems is associated with a transformation of an incommensurate tilted structure to a distinct commensurate superstructure. The driving force for commensurate tilting increases as the average ionic radius of the rare-earth ion that reside in perovskite type channels decreases. No classical ferroelectric transition is observed (down to 100 K) for compositions with x>0.75, which remain incommensurate and exhibit only relaxor behavior below room temperature
A novel lead-free tungsten bronze type ceramic Sr5BiTi3Nb7O30, was prepared by a conventional solid-...
Three solid solutions of Tetragonal Tungsten Bronze structure containing Li were prepared by solid s...
The ferroelectric tetragonal tungsten bronze TTB phases, Ba2RETi2Nb3O15 :RE=Nd,Sm, were prepared ...
Strong coupling between local polar displacements and a commensurate octahedral tilting is proposed ...
From room-temperature composite multiferroics to relaxor to ferroelectric crossovers, many original ...
Combined temperature-dependent structural and electrical characterization of a series of “empty” fer...
A series of “empty” tetragonal tungsten bronze (TTB) ferroelectrics, Ba4-xSrxDy0.67□1.33 Nb 10O30 (x...
The new phases Ba2LaMNb4O15: M=Mn, Fe were prepared by solid state reaction at 1100 °C. They have t...
We discuss the strategy for development of novel functional materials with the tetragonal tungsten b...
Combined temperature dependent structural and electrical characterization of a series of “empty” fer...
The Sr2−xK1+xNb5O15−xFx (0⩽x⩽1) solid solution of tetragonal tungsten bronze (TTB)-type was characte...
The ‘empty’ tetragonal tungsten bronze Ba4La0.67 1.33Nb10O30 displays both relaxor-like and normal d...
Ian M. Reaney acknowledges the support of the National Institute of Standards and Technology Visitin...
Lead free ferroelectric ceramic Ba4Sm2Hf4Nb6O30(BSHN) with tungsten bronze structure was synthesized...
International audienceIn the framework of the crystal chemical investigation of Tetragonal Tungsten ...
A novel lead-free tungsten bronze type ceramic Sr5BiTi3Nb7O30, was prepared by a conventional solid-...
Three solid solutions of Tetragonal Tungsten Bronze structure containing Li were prepared by solid s...
The ferroelectric tetragonal tungsten bronze TTB phases, Ba2RETi2Nb3O15 :RE=Nd,Sm, were prepared ...
Strong coupling between local polar displacements and a commensurate octahedral tilting is proposed ...
From room-temperature composite multiferroics to relaxor to ferroelectric crossovers, many original ...
Combined temperature-dependent structural and electrical characterization of a series of “empty” fer...
A series of “empty” tetragonal tungsten bronze (TTB) ferroelectrics, Ba4-xSrxDy0.67□1.33 Nb 10O30 (x...
The new phases Ba2LaMNb4O15: M=Mn, Fe were prepared by solid state reaction at 1100 °C. They have t...
We discuss the strategy for development of novel functional materials with the tetragonal tungsten b...
Combined temperature dependent structural and electrical characterization of a series of “empty” fer...
The Sr2−xK1+xNb5O15−xFx (0⩽x⩽1) solid solution of tetragonal tungsten bronze (TTB)-type was characte...
The ‘empty’ tetragonal tungsten bronze Ba4La0.67 1.33Nb10O30 displays both relaxor-like and normal d...
Ian M. Reaney acknowledges the support of the National Institute of Standards and Technology Visitin...
Lead free ferroelectric ceramic Ba4Sm2Hf4Nb6O30(BSHN) with tungsten bronze structure was synthesized...
International audienceIn the framework of the crystal chemical investigation of Tetragonal Tungsten ...
A novel lead-free tungsten bronze type ceramic Sr5BiTi3Nb7O30, was prepared by a conventional solid-...
Three solid solutions of Tetragonal Tungsten Bronze structure containing Li were prepared by solid s...
The ferroelectric tetragonal tungsten bronze TTB phases, Ba2RETi2Nb3O15 :RE=Nd,Sm, were prepared ...