首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Preparation of Ca[B6O9(OH)2] ? 3H2O nanomaterials by a phase transformation method and their flame retardant and thermodynamic properties
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Preparation of Ca[B6O9(OH)2] ? 3H2O nanomaterials by a phase transformation method and their flame retardant and thermodynamic properties

机译:Ca [B6O9(OH)2]α的制备相变法制备3H2O纳米材料及其阻燃和热力学性质

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摘要

Two kinds of Ca[B6O9(OH)2] ? 3H2O morphologies, a nanoflake and an ellipsoidal-like nanostructure, have been prepared by an ultrasound-assisted phase transformation of ulexite in H3BO3 aqueous solution. All samples were characterized by XRD, FT-IR, TG-DTA, SEM and chemical analysis. The possible formation mechanism of calcium borate Ca[B6O9(OH}2] ? 3H2O was proposed. Furthermore, the flame retardant properties of synthesized Ca[B5O9(OH)2] ? 3H2O nanostructures were investigated by a thermal analysis method, demonstrating that the nanoflake sample with smaller size had better behavior than others. Molar enthalpies of solution of prepared Ca[B6O9(OH)2] ? 3H2O samples were different because of their different morphologies and sizes. Through an appropriate thermochemical cycle, their standard molar enthalpies of formation were obtained, which decreased in turn from nanoflake to ellipsoidal-like nanostructure and then to flower-like mi" crostructure, showing that their stabilities increased gradually with the increase of Ca[B6O9(OH)2] ? 3H2O sizes.
机译:两种Ca [B6O9(OH)2]?通过在H3BO3水溶液中进行的方钠石的超声辅助相变,制备了3H2O形态,纳米薄片和椭圆形纳米结构。通过XRD,FT-IR,TG-DTA,SEM和化学分析对所有样品进行表征。提出了硼酸钙Ca [B6O9(OH} 2]≥3H2O的可能形成机理,并通过热分析方法研究了合成的Ca [B5O9(OH)2]≥3H2O的纳米结构的阻燃性能。尺寸较小的纳米片样品的行为优于其他样品,制备的Ca [B6O9(OH)2]?3H2O样品的溶液焓因其形态和大小而异,通过适当的热化学循环,它们的标准摩尔生成焓结果表明,随着Ca [B6O9(OH)2]→3H2O尺寸的增加,纳米片的稳定性从纳米片状降低到椭圆形,再到花状。

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