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Low Temperature One-Step Synthesis of Barium Titanate:Thermodynamic Modeling and Experimental Synthesis

机译:钛酸钡的低温一步合成:热力学模型与实验合成

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A thermodynamic model has been developed to determine the reaction conditions favoring low temperature direct synthesis of barium titanate (BaTiO3). The method utilizes standard-state thermodynamic data for solid and aqueous species and a Debye-Hǔckel coefficients model to represent solution nonideality. The method has been used to generate phase stability diagrams that indicate the ranges of pH and reagent concentrations, for which various species predominate in the system at a given temperature. Also, yield diagrams have been constructed that indicate the concentration, pH and temperature conditions for which different yields of crystalline BaTiO3 can be obtained. The stability and yield diagrams have been used to predict the optimum synthesis conditions (e.g.,reagent concentrations, pH and temperature). Subsequently, these predictions have been experimentally verified.As a result, phase-pure perovskite BaTiO3 has been obtained at temperature ranging from 55 to 85℃ using BaCl2,TiCl4 as a source for Ba and Ti. and NaOH as a orecioitator.
机译:已开发出一种热力学模型来确定有利于低温直接合成钛酸钡(BaTiO3)的反应条件。该方法利用了固态和水性物种的标准状态热力学数据以及Debye-Hǔckel系数模型来表示溶液的非理想性。该方法已用于生成相稳定性图,该相图说明了在给定温度下系统中各种物质占主导地位的pH和试剂浓度范围。同样,已构建了产量图,表明了可获得不同产率的结晶BaTiO3的浓度,pH和温度条件。稳定性和产率图已用于预测最佳合成条件(例如试剂浓度,pH和温度)。结果,通过使用BaCl2,TiCl4作为Ba和Ti的来源,在55至85℃的温度范围内获得了相纯钙钛矿BaTiO3。和氢氧化钠作为增凝剂。

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