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Bi_5Ti_3FeO_(15)多铁陶瓷的制备与表征 被引量:1
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作者 艾桃桃 《热加工工艺》 CSCD 北大核心 2011年第18期85-87,共3页
以TiO2、Fe2O3和Bi2O3为原始组分,采用固相烧结法制备了Bi5Ti3FeO15多铁陶瓷。借助XRD和SEM分析了相组成及显微结构。结果表明:经750℃×2h预合成后,粉体由Bi5Ti3FeO15、Bi4Ti3O12和Bi2O3相组成;经成型、二次烧结后,主晶相基本为Bi5... 以TiO2、Fe2O3和Bi2O3为原始组分,采用固相烧结法制备了Bi5Ti3FeO15多铁陶瓷。借助XRD和SEM分析了相组成及显微结构。结果表明:经750℃×2h预合成后,粉体由Bi5Ti3FeO15、Bi4Ti3O12和Bi2O3相组成;经成型、二次烧结后,主晶相基本为Bi5Ti3FeO15,其衍射峰强度和位置随温度升高发生明显变化;在850℃烧结后,形成1~3μm细小晶粒,并有大量气孔存在;随着烧结温度的升高,晶粒长大、气孔减少;在1000℃烧结后,形成了典型的片状晶粒,尺寸约10μm。 展开更多
关键词 bi5ti3feo15 bi4ti3O12 多铁 制备
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Bi5Ti3FeO15薄膜的结构和多铁性研究
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作者 黄志登 赵洪阳 +3 位作者 马志斌 付秋明 陶洪 梵子冉 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2017年第10期1018-1022,共5页
采用脉冲激光沉积的方法,在Pt/Ti/SiO_2/Si衬底上生长Bi_5Ti_3FeO_(15)(BTFO15)多铁性薄膜,并对其结构、磁性、铁电性、铁电畴等进行了研究。通过X射线衍射、扫描电镜以及高角环形暗场像–扫描透射电镜测试,结果表明,薄膜具有高结晶度... 采用脉冲激光沉积的方法,在Pt/Ti/SiO_2/Si衬底上生长Bi_5Ti_3FeO_(15)(BTFO15)多铁性薄膜,并对其结构、磁性、铁电性、铁电畴等进行了研究。通过X射线衍射、扫描电镜以及高角环形暗场像–扫描透射电镜测试,结果表明,薄膜具有高结晶度和完美层状晶格结构,两层Bi原子层紧密堆积,两层Bi_2O_2之间有三层Bi层和三层Ti(Fe)O_6八面体层,构成三明治结构;在室温下的磁滞回线和电滞回线证实了弱铁磁性和铁电性的共存;采用压电响应力显微镜研究了薄膜的畴结构,在面内和面外分别施加±3 V和±10 V的电压,观测到了畴反转。这些研究结果对理解多铁性材料的微观结构和宏观特性的相互调制有重要意义。 展开更多
关键词 bi5ti3feo15薄膜 多铁性 铁电畴
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Rare-earth praseodymium-substituted Bi_(5)Ti_(3)FeO_(15) exhibiting enhanced piezoelectric properties for high-temperature application
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作者 Xin-Yu Yu Qian Wang +3 位作者 Hui-Lin Li Yi-Jun Wan En-Meng Liang Chun-Ming Wang 《ChemPhysMater》 2024年第4期431-439,共9页
Owing to their exceptional piezoelectric effects,piezoelectric materials play a crucial role in high-end technologies and contribute significantly to the national economy.Bismuth layer-structured ferroelectrics(BLSFs)... Owing to their exceptional piezoelectric effects,piezoelectric materials play a crucial role in high-end technologies and contribute significantly to the national economy.Bismuth layer-structured ferroelectrics(BLSFs)possess high Curie temperatures,making them a focal point of research in high-temperature piezoelectric sensor devices.However,their poor piezoelectric performance and low direct-current(DC)electrical resistivity hinder their effective deployment in high-temperature applications.To overcome these shortcomings,we employed composition optimization by partially substituting bismuth ions with rare-earth praseodymium ions.This approach enhances the piezoelectric performance and improves the DC electrical resistivity by preventing the loss of volatile bismuth ions and stabilizing the bismuth oxide layer(Bi_(2)O_(2))2+,thereby reducing the concentration of oxygen vacancies.Consequently,we achieved a large piezoelectric constant d33 of 23.5 pC/N in praseodymium-substituted Bi5Ti3FeO15,which is three times higher than that of pure Bi5Ti3FeO15(7.1 pC/N),along with a high Curie temperature TC of 778℃.Additionally,the optimal composition of 4 mol%praseodymium-substituted Bi5Ti3FeO15 exhibits good thermal stability of electromechanical coupling characteristics up to 300℃.This study holds promise for a wide array of high-temperature piezoelectric applications and has the potential to accelerate the development of hightemperature piezoelectric sensor technologies. 展开更多
关键词 bismuth layer-structured ferroelectrics(BLSFs) bismuth titanate-ferrite(bi5ti3feo15) High-temperature piezoelectric sensors Piezoelectric ceramics
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