001482056 000__ 04988nam\\2200613Mu\4500 001482056 001__ 1482056 001482056 003__ NhCcYBP 001482056 005__ 20231116003203.0 001482056 006__ m\\\\\o\\d\\\\\\\\ 001482056 007__ cr\cn\nnnunnun 001482056 008__ 230701s2023\\\\xx\\\\\\o\\\\\|||\0\eng\d 001482056 020__ $$a9781000916799 001482056 020__ $$a1000916790 001482056 020__ $$a9781000916751 001482056 020__ $$a1000916758 001482056 020__ $$z1032464666 001482056 020__ $$z9781032464664 001482056 040__ $$aNhCcYBP$$cNhCcYBP 001482056 050_4 $$aTA455.P46$$bD463 2024 001482056 08204 $$a621.042 001482056 1001_ $$aDhoble, Sanjay J. 001482056 24510 $$aParadigms of Titanate Centered Energy Materials. 001482056 260__ $$aMilton :$$bTaylor & Francis Group,$$c2023. 001482056 300__ $$a1 online resource (193 pages) 001482056 336__ $$atext$$btxt$$2rdacontent 001482056 337__ $$acomputer$$bc$$2rdamedia 001482056 338__ $$aonline resource$$bcr$$2rdacarrier 001482056 500__ $$a5.2.2 Yellow-Orange Up-Conversion Emission in Eu[sup(3+)] -Yb[sup(3+)] Co-doped BaTiO[sub(3)] Phosphor 001482056 5050_ $$aCover -- Half Title -- Title Page -- Copyright Page -- Table of Contents -- Authors -- 1 Introduction -- 1.1 Introduction -- 1.1.1 Perovskite Materials -- 1.1.2 Energy Exclamations Today -- 1.1.3 Titanate Materials in Energy Production -- 1.1.4 Crystal Structure of Titania and Titanate in Energy Materials -- 1.1.5 Importance of Energy Sources and Energy Materials -- 1.1.6 Role of Energy Materials in Energy System -- 1.2 Energy-Harvesting Materials -- 1.2.1 TE Materials -- 1.2.1.1 Organic-Inorganic Hybrid TEs -- 1.2.1.2 TE Inorganic Film: Stretchy TE Device and Micro TE Generator 001482056 5058_ $$a1.2.2 TE Properties of Lanthanide-Doped Titanates -- 1.3 Power-Saving Materials -- 1.4 Perovskite Photonics -- 2 Energy Materials -- 2.1 Role of Activators -- 2.2 Unique Properties of Lanthanides -- 2.3 Preparation Methods and Surface Properties of RE-TiO[sub(2)] -- 2.3.1 Erbium-TiO[sub(2)] -- 2.3.1.1 Morphological Study of TiO[sub(2)]:Er[sup(3+)] -- 2.3.1.2 Crystal Structure of Er-TiO[sub(2)] -- 2.3.1.3 BET Surface Area and Optical Properties of Er-TiO[sub(2)] -- 2.3.1.4 Upconversion Properties of Er-TiO[sub(2)] -- 2.3.1.5 Photocatalytic Properties of Er-TiO[sub(2)] -- 2.3.2 Holmium-TiO[sub(2)] 001482056 5058_ $$a2.3.3 Thulium-TiO[sub(2)] -- 2.3.4 Neodymium-TiO[sub(2)] -- 2.4 The Origin of RE-TiO[sub(2)] Visible Light Photoactivity -- 2.4.1 Basic Principles of the Theoretical Study of Lanthanides-TiO[sub(2)] Photocatalysts -- 2.4.2 Computational Characterization of the Investigated RE-TiO[sub(2)] Structures -- 2.4.3 Anti-Stokes Upconversion Process in the RE-TiO[sub(2)] Mechanism -- 2.5 Conclusion and Perspectives -- 3 Synthesis of Titanate Materials -- 3.1 Hydrothermal Method -- 3.2 Coprecipitation -- 3.3 Sol-gel -- 3.4 Sonochemical -- 3.5 Solution Combustion -- 3.5.1 Role of Fuels -- 3.5.2 Water Content 001482056 5058_ $$a3.5.3 Importance of Gaseous Products -- 3.5.4 Flame Temperature -- 3.5.5 Fuel-to-Oxidizer Ratio -- 3.6 Solid-State Reaction -- 3.7 Pulsed Laser Deposition -- 3.8 Sputtering Method -- 4 Titanate Materials -- 4.1 BaTiO[sub(3)] Multipods -- 4.2 PVDF-HFP-GMA/BaTiO[sub(3)] Nanocomposites -- 4.3 BaTiO[sub(3)]/Polyvinylidene Fluoride (BT/PVDF) Nanocomposites -- 4.4 BaTi[sub(1-x)]M[sub(x)]O[sub(3)] (M=Cr, Mn, Fe, and Co) Nanocrystals -- 4.5 BaTiO[sub(3)] /Polydimethylsiloxane (PDMS) Nanogenerators -- 4.6 CaTiO[sub(3)]:Eu[sup(3+)] Phosphors 001482056 5058_ $$a4.7 Zn[sup(2+)] Ions in BaTiO[sub(3)]: Er[sup(3)]/Yb[sup(3)]+ Nanophosphor -- 4.8 MgTiO[sub(3)]:Mn[sup(4+)] -- 4.9 CaTiO[sub(3)]:Pr[sup(3+@)]SiO[sub(2)] -- 5 Applications of Titanate Materials -- 5.1 BaTiO[sub(3)]: RE Yellow Phosphors an TL Applications -- 5.1.1 X-Ray Diffraction (XRD) of BaTiO[sub(3)]: Dy[sub(3+)] Phosphor -- 5.1.2 TL Glow Curve Studies -- 5.2 Photoluminescence Applications with Specific Titanate Materials -- 5.2.1 (Ba,Sr)TiO[sub(3)]:RE Perovskite Phosphors (RE=Dy, Eu): Lighting, Display, and Related Fields 001482056 506__ $$aAccess limited to authorized users 001482056 533__ $$aElectronic reproduction.$$bAnn Arbor, MI$$nAvailable via World Wide Web. 001482056 588__ $$aDescription based on print version record. 001482056 650_0 $$aPerovskite materials. 001482056 650_0 $$aTitanates.$$0(DLC)sh 93000044 001482056 650_0 $$aEnergy storage$$xMaterials.$$0(DLC)sh 85043149 001482056 650_0 $$aEnergy conversion$$xMaterials. 001482056 655_0 $$aElectronic books 001482056 7001_ $$aKadam, Abhijeet R. 001482056 7001_ $$aDarshan, G. P. 001482056 7001_ $$aSharma, S. C. 001482056 7001_ $$aNagabhushuna, H. 001482056 7102_ $$aProQuest (Firm) 001482056 77608 $$iPrint version:$$aDhoble, Sanjay J.$$tParadigms of Titanate Centered Energy Materials$$dMilton : Taylor & Francis Group,c2023$$z9781032464664 001482056 852__ $$bebk 001482056 85640 $$3GOBI DDA$$uhttps://univsouthin.idm.oclc.org/login?url=https://ebookcentral.proquest.com/lib/usiricelib-ebooks/detail.action?docID=7266287$$zOnline Access 001482056 909CO $$ooai:library.usi.edu:1482056$$pGLOBAL_SET 001482056 980__ $$aBIB 001482056 980__ $$aEBOOK 001482056 982__ $$aEbook 001482056 983__ $$aOnline