RT Journal Article T1 Investigation on the Luminescence Properties of InMO4 (M = V5+, Nb5+, Ta5+) Crystals Doped with Tb3+ or Yb3+ Rare Earth Ions A1 Botella, Pablo A1 Enrichi, Francesco A1 Vomiero, Alberto A1 Muñoz Santiuste, Juan Enrique A1 Garg, Alka B. A1 Arvind, Ananthanarayanan A1 Manjon, Francisco J. A1 Segura, Alfredo A1 Errandonea, Daniel AB We explore the potential of Tb- and Yb-doped InVO4, InTaO4, and InNbO4 for applications as phosphors for light-emitting sources. Doping below 0.2% barely change the crystal structure and Raman spectrum but provide optical excitation and emission properties in the visible and near-infrared (NIR) spectral regions. From optical measurements, the energy of the first/second direct band gaps was determined to be 3.7/4.1 eV in InVO4, 4.7/5.3 in InNbO4, and 5.6/6.1 eV in InTaO4. In the last two cases, these band gaps are larger than the fundamental band gap (being indirect gap materials), while for InVO4, a direct band gap semiconductor, the fundamental band gap is at 3.7 eV. As a consequence, this material shows a strong self-activated photoluminescence centered at 2.2 eV. The other two materials have a weak self-activated signal at 2.2 and 2.9 eV. We provide an explanation for the origin of these signals taking into account the analysis of the polyhedral coordination around the pentavalent cations (V, Nb, and Ta). Finally, the characteristic green (5D4 → 7FJ) and NIR (2F5/2 → 2F7/2) emissions of Tb3+ and Yb3+ have been analyzed and explained. PB American Chemical Society SN 2470-1343 YR 2020 FD 2020-01-30 LK https://hdl.handle.net/10016/35584 UL https://hdl.handle.net/10016/35584 LA eng NO The authors thank the financial support from the SpanishMinisterio de Ciencia, Innovación y Universidades, SpanishResearch Agency (AEI), Generalitat Valenciana, and EuropeanFund for Regional Development (ERDF, FEDER) undergrants no. MAT2016-75586-C4-1/2-P, RTI2018-101020-BI00,RED2018-102612-T (MALTA Consolier Team), andPrometeo/2018/123 (EFIMAT). P.B. acknowledges financialsupport from the Kempe Foundation and the Knut & AliceWallenberg Foundation via a doctoral studentship. A.B.G.thanks the support provided by Universitat de Valencia toperform a research stay (Atracció de Talent, VLC-CAMPUS). DS e-Archivo RD 27 jul. 2024