Laser Induced Crystallization in Lithium Borate-Bismuth Tungstate Glass-Ceramic for Photocatalytic Dye Degradation
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[1] R. Vaish,et al. Bismuth Zinc Borate- Polyacrylonitrile Nanofibers for Photo-piezocatalysis , 2023, Journal of Industrial and Engineering Chemistry.
[2] R. Vaish,et al. Piezocatalytic activity of CaO–Bi2O3–B2O3 glass-ceramics under ultrasonic vibrations , 2023, APL Energy.
[3] R. Vaish,et al. Bismuth vanadate-reduced graphene oxide-polyvinylidene fluoride electrospun composite membrane for piezo-photocatalysis , 2023, Nano-Structures & Nano-Objects.
[4] R. Vaish,et al. Parametric study of visible light active Bi2ZnB2O7 photocatalyst for dye degradation , 2023, Surfaces and Interfaces.
[5] R. Vaish,et al. Photo/Piezo-catalytic Performance of 0.5Ba(Zr0.2Ti0.8)O3-0.5(Ba0.7Sr0.3)TiO3 Ceramic , 2023, Journal of Materials Research and Technology.
[6] R. Vaish,et al. Piezocatalysis Dye Degradation Using SrO-Bi2O3-B2O3 Glass-Ceramics , 2022, ACS Applied Engineering Materials.
[7] R. Vaish,et al. Effect of Poling on Multicatalytic Performance of 0.5Ba(Zr0.2Ti0.8)O3-0.5(Ba0.7Sr0.3)TiO3 Ferroelectric Ceramic for Dye Degradation , 2022, Materials.
[8] R. Vaish,et al. Piezocatalytic dye degradation using Bi2O3-ZnO-B2O3 glass-nanocomposites , 2022, Journal of Materials Research and Technology.
[9] J. Mauro,et al. Glass-ceramics in dentistry: Fundamentals, technologies, experimental techniques, applications, and open issues , 2022, Progress in Materials Science.
[10] R. Vaish,et al. Solar/visible light photocatalytic dye degradation using BaTi 1‐x Fe x O 3 ceramics , 2022, Journal of the American Ceramic Society.
[11] K. Annapurna,et al. Transparent Tellurite Glass-Ceramics for photonics applications: A Comprehensive Review on crystalline phases and crystallization mechanisms , 2021, Progress in Materials Science.
[12] R. Vaish,et al. WS2 Monolayer for Piezo–Phototronic Dye Degradation and Bacterial Disinfection , 2021, ACS Applied Nano Materials.
[13] R. Vaish,et al. Controlled crystallization of BiOCl/BiF3 on ZnO–Bi2O3–B2O3 glass surfaces for photocatalytic and self-cleaning applications , 2019, Materialia.
[14] Z. Ji,et al. A review on nanostructured glass ceramics for promising application in optical thermometry , 2018, Journal of Alloys and Compounds.
[15] R. Vaish,et al. Photocatalytic Active Bismuth Fluoride/Oxyfluoride Surface Crystallized 2Bi2O3-B2O3 Glass–Ceramics , 2018, Journal of Electronic Materials.
[16] R. Vaish,et al. Photocatalytic study on SrBi2B2O7 (SrO-Bi2O3-B2O3) transparent glass ceramics , 2018 .
[17] B. Liu,et al. Organic Solar Cells Based on WO2.72 Nanowire Anode Buffer Layer with Enhanced Power Conversion Efficiency and Ambient Stability. , 2017, ACS applied materials & interfaces.
[18] K. Shinozaki,et al. Synthesis and photocatalytic properties of α-ZnWO4 nanocrystals in tungsten zinc borate glasses , 2014 .
[19] Xiaolu Tang,et al. Raman spectroscopy and density functional theory analyses of the melt structure in a Li2B4O7 crystal growth system , 2014 .
[20] Jie Fu. Photocatalytic properties of TiO2–P2O5 glass ceramics , 2011 .
[21] H. C. Gupta,et al. Lattice dynamical investigations for Raman and infrared frequencies of Bi2WO6 , 2011 .
[22] H. Masuhara,et al. Laser-induced crystallization and crystal growth. , 2011, Chemistry, an Asian journal.
[23] Akihiko Sakamoto,et al. Glass–Ceramics: Engineering Principles and Applications , 2010 .
[24] Y. Huang,et al. Ferroelectric transition of Aurivillius compounds Bi5Ti3FeO15 and Bi6Ti3Fe2O18 , 2010 .
[25] Hanyun Cheng,et al. Synthesis of Porous Bi2WO6 Thin Films as Efficient Visible‐Light‐Active Photocatalysts , 2009 .
[26] H. G. Kim,et al. Patterning of Non‐Linear Optical Crystals in Glass by Laser‐Induced Crystallization , 2007 .
[27] A. Luches,et al. Laser-induced modification of glass-ceramics microstructure and applications , 2005 .
[28] Richard T. Haasch,et al. Surface Characterization of Electrodes from High Power Lithium-Ion Batteries , 2002 .
[29] G. S. Murugan,et al. Characterization of lithium borate-bismuth tungstate glasses and glass-ceramics by impedance spectroscopy , 2001 .
[30] G. S. Murugan,et al. Structural, dielectric and optical properties of lithium borate–bismuth tungstate glass-ceramics , 1999 .
[31] R. Withers,et al. Structure refinement of commensurately modulated bismuth tungstate, Bi2WO6 , 1991 .
[32] R. Withers,et al. The crystal chemistry underlying ferroelectricity in Bi4Ti3O12, Bi3TiNbO9, and Bi2WO6 , 1991 .
[33] E. Subbarao,et al. A family of ferroelectric bismuth compounds , 1962 .
[34] E. Subbarao. Crystal chemistry of mixed Bismuth oxides with layer-type structure , 1962 .
[35] R. Vaish,et al. Planetary ball milling induced piezocatalysis for dye degradation using BaTiO3 ceramics , 2023, Environmental Science: Advances.
[36] M. Allix,et al. Crystallization and Glass-Ceramics , 2019, Springer Handbook of Glass.
[37] G. S. Murugan,et al. Dielectric, linear and non-linear optical properties of lithium borate–bismuth tungstate glasses and glass-ceramics , 2001 .