Interplay between local distortion at lattice sites with optical and electrical properties of Eu3+-doped MNbO3 (M = Na and K) compounds†
Abstract
Local distortion at lattice sites plays a pivotal role in determining many important physical properties. In the present study, our focus has been to examine such crucial roles for the optical and ferroelectric properties in MNbO3 (M = Na and K) compounds. This study on dual property has significant importance in view of the potential application for piezophotonic devices; herein, an effort has been made to develop compounds with the simultaneous control of such properties in the desired range. For the optical properties, we doped Eu3+ ions, which not only give efficient red emission but also act as a spectroscopic probe for the local structure investigation. It was observed from a photoluminescence (PL) study that the Eu3+:NaNbO3 compound is a pink-colour-emitting phosphor material while the Eu3+:KNbO3 compound is a single phase white-light-emitting material. It was also observed that doping Eu3+ ions had a significant impact on ferroelectric properties of these compounds. While such doping increased the remnant polarization of NaNbO3, the impact was completely reversed in KNbO3. A PL study confirmed that the local structure surrounding the Eu3+ ion in NaNbO3 and KNbO3 compounds was different, and there was a more distorted environment surrounding the Eu3+ ion in the NaNbO3 compound. It was confirmed that Eu3+ ions, which exist in an asymmetric environment, have a major contribution among the PL lifetime components in the NaNbO3 compound. On the other hand in the KNbO3 compound, Eu3+ ions, which exist in a comparatively more symmetric environment, make the major contribution. From the PL study, we also conclude that Eu3+ ions preferably occupy the Na-site in NaNbO3 compound, which may distort the nearby NbO6 more and are responsible for a higher polarization. On the contrary in KNbO3 compound, majority of Eu3+ ions prefer symmetrical octahedral sites, which may not have an additional impact on the distortion of the NbO6 octahedron. Further, it was also observed from the extended X-ray absorption fine structure (EXAFS) study that upon Eu3+ doping the distortion parameter σ2 increased for Nb–O bonds in NaNbO3 compounds, while it decreased in KNbO3 compounds.