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Very-low temperature synthesis of pure and crystalline lead-free Ba.85Ca.15Zr.1Ti.9O3 ceramic

机译:非常低的温度合成纯和结晶无铅Ba.85ca.15zr.1ti.903陶瓷

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摘要

The site-doping strategy of barium titanate (BaTiO3) is a promising way to develop new lead-free materials for energy with enhanced dielectric and piezoelectric properties. A novel strategy to elaborated pure and crystalline Ba.85Ca.15Zr.1Ti.9O3 (BCZT) ferroelectric powders at low temperature is proposed. It is based on sol-gel method followed by a hydrothermal reaction. The effects of preparation temperature on structure, crystallinity, purity, morphology and particles size distribution of BCZT powders were studied. It was clearly shown that pure and crystalline BCZT could be obtained over 80 degrees C. Furthermore, the BCZT particles exhibit a spherical shape whose mean size increases from 145 nm at 40 degrees C to 160 nm at 80 degrees C. The present study may provide a new strategy to design lead-free ferroelectric materials with enhanced structure and microstructure properties at very low temperature.
机译:钛酸钡(BATIO3)的立场掺杂策略是一种有希望的方式,用于通过增强的电介质和压电性能开发新的无铅材料。 提出了一种新的策略,用于在低温下阐述纯净和结晶Ba.85Ca.15Zr.1Ti.9O3(BCZT)铁电粉末。 它基于溶胶 - 凝胶方法,然后是水热反应。 研究了制备温度对BCZT粉末的结构,结晶度,纯度,形态和颗粒尺寸分布的影响。 清楚地表明,纯和结晶BCZT可以在80℃下获得。此外,BCZT颗粒表现出球形形状,其平均尺寸在80℃至160nm下在80℃下增加至160nm。本研究可以提供 一种在极低温度下设计具有增强结构和微观结构性能的无铅铁电材料的新策略。

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