The local structure of K0.5Na0.5NbO3 is investigated using first-principles methods with an optimized special quasirandom structure (SQS). Through a comparison of the computed pair distribution functions with those from neutron powder diffraction data, the SQS approach demonstrates its ability to accurately capture the local structure patterns derived from the random distribution of K and Na on the perovskite A-site. Using these structures, local variations in Na-O interactions are suggested to be the driving force behind the R3c to Pm phase transition. A comparison between the SQS and a rocksalt structure shows the inability of the latter to account for the local variability present in a random solid solution. As such, the predictive natur...
The crystal structure of NaNbO<sub>3</sub> has been studied in detail in the temperature regime 360 ...
In this work, X-ray and neutron powder diffraction experiments and complementary solid-state NMR spe...
Sodium niobate (NaNbO3) has a particularly complex phase diagram, with a series of phase transitions...
(KxNa1-x)NbO3 (KNN) and its solid solutions are considered as potential alternatives to traditional ...
Perovskites, ABX₃, and their associated solid-solutions are a particularly important and attractive ...
The fundamental principles that govern antiferroelectric (AFE)-ferroelectric (FE) transitions are no...
Sodium niobate (NaNbO3 or NN) is described as "the most complex perovskite system,"which exhibits tr...
Rietveld refinement using neutron powder diffraction data is reported for the potential lead-free pi...
The electronic and structural properties of different charge-imbalanced perovskite oxide NaNbO3/SrTi...
ABO3 perovskites display a wide range of phase transitions, which are driven by A/B-site centered po...
The crystal structure of NaNbO3 has been studied in detail in the temperature regime 360 < T <...
Nuclear magnetic resonance (NMR) is a powerful experimental technique for probing the local environm...
Despite the high prominence of the perovskites BiFeO3 and KNbO3 the solid solution between the two h...
We perform a comprehensive theoretical study of the structural and electronic properties of potassiu...
We report a first-principles simulation study of phase transitions in KNO3, using our recently devel...
The crystal structure of NaNbO<sub>3</sub> has been studied in detail in the temperature regime 360 ...
In this work, X-ray and neutron powder diffraction experiments and complementary solid-state NMR spe...
Sodium niobate (NaNbO3) has a particularly complex phase diagram, with a series of phase transitions...
(KxNa1-x)NbO3 (KNN) and its solid solutions are considered as potential alternatives to traditional ...
Perovskites, ABX₃, and their associated solid-solutions are a particularly important and attractive ...
The fundamental principles that govern antiferroelectric (AFE)-ferroelectric (FE) transitions are no...
Sodium niobate (NaNbO3 or NN) is described as "the most complex perovskite system,"which exhibits tr...
Rietveld refinement using neutron powder diffraction data is reported for the potential lead-free pi...
The electronic and structural properties of different charge-imbalanced perovskite oxide NaNbO3/SrTi...
ABO3 perovskites display a wide range of phase transitions, which are driven by A/B-site centered po...
The crystal structure of NaNbO3 has been studied in detail in the temperature regime 360 < T <...
Nuclear magnetic resonance (NMR) is a powerful experimental technique for probing the local environm...
Despite the high prominence of the perovskites BiFeO3 and KNbO3 the solid solution between the two h...
We perform a comprehensive theoretical study of the structural and electronic properties of potassiu...
We report a first-principles simulation study of phase transitions in KNO3, using our recently devel...
The crystal structure of NaNbO<sub>3</sub> has been studied in detail in the temperature regime 360 ...
In this work, X-ray and neutron powder diffraction experiments and complementary solid-state NMR spe...
Sodium niobate (NaNbO3) has a particularly complex phase diagram, with a series of phase transitions...