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首页> 外文期刊>Journal of Electronic Materials >Microstructure, Phase Transition, and Piezoelectric Properties of Cerium-Substituted Bismuth Titanate Nanofibers
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Microstructure, Phase Transition, and Piezoelectric Properties of Cerium-Substituted Bismuth Titanate Nanofibers

机译:铈取代钛酸铋纳米纤维的微结构,相变和压电性能

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摘要

Cerium-substituted bismuth titanate (BCT) nanofibers were synthesized using sol-gel-based electrospinning. The morphology, crystallized phase, and crystal structure of the nanofibers were characterized by scanning electron microscopy, x-ray diffraction, and transmission electron microscopy, respectively. Fine-crystallinity nanofibers with diameters in the range of 100 nm to 200 nm and length over 100 (mu)m after annealing at 750 deg C for 1 h were obtained. The phase transition of the BCT nanofibers was investigated by thermal analysis, and the Curie temperature was found to be 540 deg C. A displacement-voltage "butterfly" curve with displacement maximum of 1.1 nm was observed by piezoresponse force microscopy, and the maximum value of the piezoelectric coefficient was up to 158 pm/V, being attributed to successful Ce co-substitution for both A- and B-sites based on Raman spectrum analysis.
机译:铈取代钛酸铋(BCT)纳米纤维是使用基于溶胶凝胶的静电纺丝技术合成的。纳米纤维的形态,结晶相和晶体结构分别通过扫描电子显微镜,X射线衍射和透射电子显微镜表征。在750℃退火1小时后,获得直径在100nm至200nm范围内且长度超过100μm的细结晶度纳米纤维。通过热分析研究了BCT纳米纤维的相变​​,发现居里温度为540℃。通过压电响应力显微镜观察到位移-电压“蝴蝶”曲线的位移最大值为1.1 nm,且最大值压电系数的最大值高达158 pm / V,这归因于根据拉曼光谱分析成功地将Ce和A位置和B位置的Ce共取代。

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