The perovskite Li0.2Na0.8NbO3 is shown, by powder neutron diffraction, to display a unique sequence of phase transitions at elevated temperature. The ambient temperature polar phase (rhombohedral, space group R3c) transforms via a first-order transition to a polar tetragonal phase (space group P42mc) in the region 150–300°C; these two phases correspond to Glazer tilt systems a−a−a− and a+a+c−, respectively. At 500°C a ferroelectric–paraelectric transition takes place from P42mc to P42/nmc, retaining the a+a+c− tilt. Transformation to a single-tilt system, a0a0c+ (space group P4/mbm), occurs at 750°C, with the final transition to the aristotype cubic phase at 850°C. The P42mc and P42/nmc phases have each been seen only once and twice each, r...
textThe perovskite structure has an incredible versatility that results in myriad compounds with var...
The structural changes of stoichiometric LiNbO3 at temperatures up to 1470 K have been investigated ...
The structural changes of stoichiometric LiNbO3 at temperatures up to 1470 K have been investigated ...
Funding for this research was provided by: EPSRC (award No. EP/L505079/1).We demonstrate the existen...
The perovskite Li0.2Na0.8NbO3 is shown, by powder neutron diffraction, to display a unique sequence ...
We thank EPSRC for a PhD studentship to CALD (EP/P505097/1).The phase behavior of the layered perovs...
Authors thank Dr George Carins for experimental assistance. Y.-Y.G thanks the China Scholarships Cou...
M.D.P. was supported by an EPSRC DTA studentship. NMR facilities were supported by EPSRC under Grant...
M.D.P. was supported by an EPSRC DTA studentship. NMR facilities were supported by EPSRC under Grant...
The authors thank the Government of the United Arab Emirates for sponsoring this project, the EPSRC ...
High-temperature phase behavior in the system LixNa1−xNbO3 has been studied by using high-resolution...
High-temperature phase behavior in the system LixNa1−xNbO3 has been studied by using high-resolution...
In this work, X-ray and neutron powder diffraction experiments and complementary solid-state NMR spe...
textThe perovskite structure has an incredible versatility that results in myriad compounds with var...
The antipolar orthorhombic Pnma phase with the √2ap × 4ap × 2 √2ap superstructure (ap ~4 Å is the ps...
textThe perovskite structure has an incredible versatility that results in myriad compounds with var...
The structural changes of stoichiometric LiNbO3 at temperatures up to 1470 K have been investigated ...
The structural changes of stoichiometric LiNbO3 at temperatures up to 1470 K have been investigated ...
Funding for this research was provided by: EPSRC (award No. EP/L505079/1).We demonstrate the existen...
The perovskite Li0.2Na0.8NbO3 is shown, by powder neutron diffraction, to display a unique sequence ...
We thank EPSRC for a PhD studentship to CALD (EP/P505097/1).The phase behavior of the layered perovs...
Authors thank Dr George Carins for experimental assistance. Y.-Y.G thanks the China Scholarships Cou...
M.D.P. was supported by an EPSRC DTA studentship. NMR facilities were supported by EPSRC under Grant...
M.D.P. was supported by an EPSRC DTA studentship. NMR facilities were supported by EPSRC under Grant...
The authors thank the Government of the United Arab Emirates for sponsoring this project, the EPSRC ...
High-temperature phase behavior in the system LixNa1−xNbO3 has been studied by using high-resolution...
High-temperature phase behavior in the system LixNa1−xNbO3 has been studied by using high-resolution...
In this work, X-ray and neutron powder diffraction experiments and complementary solid-state NMR spe...
textThe perovskite structure has an incredible versatility that results in myriad compounds with var...
The antipolar orthorhombic Pnma phase with the √2ap × 4ap × 2 √2ap superstructure (ap ~4 Å is the ps...
textThe perovskite structure has an incredible versatility that results in myriad compounds with var...
The structural changes of stoichiometric LiNbO3 at temperatures up to 1470 K have been investigated ...
The structural changes of stoichiometric LiNbO3 at temperatures up to 1470 K have been investigated ...