Journal Article

·2013 OPEN ACCESS

Precipitation method for barium metaborate (BaB[sub 2]O[sub 4]) synthesis from borax solution

Eymen Akşener YTU , Aysel Kantürk Fıgen YTU , Sabriye Pişkin YTU

AIP conference proceedings

Abstract

In this study, barium metaborate (⁠BaB2O4⁠, BMB) synthesis from the borax solution was carried out. BMB currently is used in production of ceramic glazes, luminophors, oxide cathodes as well as additives to pigments for aqueous emulsion paints and also β−BaB2O4 single crystals are the best candidate for fabrication of solid-state UV lasers operating at a wavelength of 200 nm due to excellent nonlinear optical properties. In the present study, synthesis was carried out from the borax solution (⁠Na2B4O7⋅10H2O⁠, BDH) and barium chloride (⁠BaCI2⋅2H2O⁠, Ba) in the glass-batch reactor with stirring. The effect of, times (5-15 min), molar ratio [stoich.ration (1.0:2.0), 1.25:2.0, 1.5:2.0, 2.5:2:0, 3.0:2.0, 3.5:2.0,4.0:2.0, 5.0:2.0] and also crystallization time (2-6 hour) on the BMB yield (%) was investigated at 80 °C reaction temperature. It is found that, BMB precipitation synthesis with 90 % yield can be performed from 0.50 molar ration (BDH:Ba), under 80 °C, 15 minute, and 6 hours crystallization time. The structural properties of BMB powders were characterized by using XRD, FT-IR and DTA-TG instrumental analysis technique.

Keywords

Borax Crystallization Materials science Barium Precipitation Yield (engineering) Aqueous solution Barium chloride Analytical Chemistry (journal) Nuclear chemistry Coprecipitation Barium borate Boron Mineralogy Chemical engineering Inorganic chemistry Chemistry Metallurgy Chromatography Raw material Physical chemistry

Subject Areas

Pigment Synthesis and Properties ·Inorganic Chemistry ·Physical Sciences
Mineralogy and Gemology Studies ·Geochemistry and Petrology ·Physical Sciences
Crystal Structures and Properties ·Electronic, Optical and Magnetic Materials ·Physical Sciences

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