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Sintering-driven effects on the band gap of (Pb,La)(Ti,Ni)O3 photovoltaic ceramics
Authors:Natália F C Vargas  Mahmoud S Alkathy  José A Eiras  Valmor Roberto Mastelaro  Manuel H Lente
Affiliation:1. Instituto de Ciência e Tecnologia, Universidade Federal de São Paulo, Sao Paulo, Brazil;2. Departamento de Física, Universidade Federal de São Carlos, São Carlos, Brazil;3. Instituto de Física de São Carlos, Universidade de São Paulo, São Carlos, Brazil
Abstract:In this work, the influence of the sintering temperature on the physical properties of (Pb0.8La0.2)(Ti0.9Ni0.1)O3 (PLT-Ni) ceramics is reported. The experimental data revealed that the energy band gap of PLT-Ni ceramics could be tailored from approximately 2.7 to 2.0 eV by changing the sintering temperature from 1100°C to 1250°C. It is demonstrated that the simple substitution of Ti4+ by Ni2+ cations is effective to decrease the intrinsic band gap while increasing the tetragonality factor and the spontaneous polarization. However, the additional red-shift observed in the absorption edge of the PLT-Ni with increasing the sintering temperature was associated with a continuous increase in the oxygen vacancies (urn:x-wiley:00027820:media:jace17682:jace17682-math-0001) amount. It is believed that the impact of the creation of these thermally induced urn:x-wiley:00027820:media:jace17682:jace17682-math-0002 is manifold. The presence of urn:x-wiley:00027820:media:jace17682:jace17682-math-0003 and Ni2+ ions generate the Ni2+-urn:x-wiley:00027820:media:jace17682:jace17682-math-0004 defect-pairs that promoted both a decrease in the intrinsic band gap and an additional increase of the tetragonality factor, consequently, increasing the spontaneous polarization. The creation of Ni2+-urn:x-wiley:00027820:media:jace17682:jace17682-math-0005 defects also changed the local symmetry of Ni2+ ions from octahedral to a square pyramid, thus lifting the degeneracy of the Ni2+ 3d orbitals. With the increase in the sintering temperature, lower-energy absorbing intraband states were also formed due to an excess of urn:x-wiley:00027820:media:jace17682:jace17682-math-0006, being responsible for an add-on shoulder in the absorption edge, extending the light absorption curve to longer wavelengths and leading to an additional absorption in “all investigated” spectrum as well.
Keywords:dielectric materials/properties  electroceramics  ferroelectricity/ferroelectric materials  photovoltaic  sinter/sintering
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