Effect of Sm and Ni co-doping on optical and electrical properties of lead magnesate niobate titanate ceramics.

Aias, Denial; Balanov, Vasilii; Khansur, Neamul H; Pankratova, Viktorija; Anandakrishnan, Sivagnana Sundaram; Yadav, Suhas; Cichoň, Stanislav; Cao, Wei et al. · PLoS One · 2026

basic_science · Level V

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Abstract

The ability to manipulate the bandgap while maintaining strong ferroelectricity in perovskite oxides offers numerous functional advantages, including multimodal energy harvesting/sensing, current modulation, dual-source actuation, electric-free poling, and enhanced bulk photovoltaic effect. However, bandgap engineering of Pb(Mg1/3Nb2/3)O3-PbTiO3 (PMN-PT) - renowned for its outstanding piezoelectric properties - via Ni2+ doping remains unexplored, despite its prior success in alkaline niobates. This study provides a comprehensive characterization of the structure-property relationships in Sm/Ni co-doped PMN-PT ceramics, especially for their optoelectrical properties. The results show that Ni2+ doping behaves differently than in alkaline niobates. Nevertheless, Sm/Ni co-doping effectively tunes the phase transition, photoconductivity, charge carrier trapping, and optical absorption while retaining reasonable piezoelectric energy harvesting performance. Overall, this work offers insights into the role of Ni2+ in the band structure of Sm-PMN-PT perovskite and pyrochlore phases.

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