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首页> 外文期刊>Journal of Electronic Materials >Synthesis of Nanometric-Sized Barium Titanate Powders Using Acetylacetone as the Chelating Agent in a Sol-Precipitation Process
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Synthesis of Nanometric-Sized Barium Titanate Powders Using Acetylacetone as the Chelating Agent in a Sol-Precipitation Process

机译:溶胶-沉淀法以乙酰丙酮为螯合剂合成纳米级钛酸钡粉末

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摘要

Nanometric-sized barium titanate powders were prepared by using titanium isopropoxid as the raw material and acetylacetone as a chelating agent,in a strong alkaline solution (pH > 13) through the sol-precipitation method.The preparatory variables affect the extent of cross-linking in the structure,change the mode of condensation of the gels,and even control the particle size of the powder.The reaction rate of forming powder,at a higher temperature such as 100°C and more water content (the molar ratio of water to titanium isopropoxide is 25) or fewer acetylacetone (the molar ratio of acetylacetone to titanium isopropoxide is 1),is rapid and the particle size formed is finer at 60-80 nm.On the contrary,that of forming powder,at lower temperature (40°C) and less water content (molar ratio of water/titanium isopropoxide=5) or higher acetylacetone (acetylacetone/titanium isopropoxide=7),is slow and the particle size of the powder is larger.The optimal preparatory conditions were obtained by using the experimental statistical method;as a result,nanometric-sized BaTiO3 powder with an average particle size of about 50 nm was prepared.
机译:以异丙醇钛为原料,乙酰丙酮为螯合剂,在强碱性溶液(pH> 13)中通过溶胶沉淀法制备纳米尺寸的钛酸钡粉末,制备变量影响交联程度在结构中,改变凝胶的缩合方式,甚至控制粉末的粒径。在较高的温度下(例如100°C和更高的水含量(水与水的摩尔比),形成粉末的反应速率异丙醇钛为25)或更少的乙酰丙酮(乙酰丙酮与异丙醇钛的摩尔比为1),快速且在60-80 nm处形成的粒度更细;相反,在较低温度下(40)形成粉末的粒度°C)和较少的水含量(水/异丙醇钛摩尔比= 5)或更高的乙酰丙酮(乙酰丙酮/异丙醇钛= 7)缓慢且粉末粒径较大。通过以下方法获得了最佳的制备条件使用实验统计方法;结果制备了平均粒径约为50 nm的纳米级BaTiO3粉末。

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