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Sol-Gel方法制备掺Y PZT铁电薄膜材料的研究 被引量:4
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作者 余大年 刘梅冬 +3 位作者 曾亦可 王培英 饶韫华 李楚容 《压电与声光》 CSCD 北大核心 1997年第1期50-53,共4页
介绍用Sol-Gel方法制备掺YPZT(PYZT)铁电薄膜的工艺,并比较了PZT和PYZT薄膜的性能参数。实验结果表明。
关键词 薄膜 掺杂 压电铁电材料
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PZT四方相区介电常数ε_r与晶格畸变关系的研究 被引量:5
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作者 张端明 严文生 +3 位作者 钟志成 杨凤霞 郑克玉 李智华 《物理学报》 SCIE EI CAS CSCD 北大核心 2004年第5期1316-1320,共5页
从Haun的PZT热力学理论出发 ,给出了PZT四方相区介电常数εr 与晶格畸变c a关系的基本方程 ,并深入地根据相关实验资料和物理图像的合理推论 ,建立了关于晶格畸变c a与介电常数εr 相互依赖的基本关系式 .然后 ,根据该基本关系式仔细地... 从Haun的PZT热力学理论出发 ,给出了PZT四方相区介电常数εr 与晶格畸变c a关系的基本方程 ,并深入地根据相关实验资料和物理图像的合理推论 ,建立了关于晶格畸变c a与介电常数εr 相互依赖的基本关系式 .然后 ,根据该基本关系式仔细地研究了PZT四方相区晶格畸变c a对介电常数εr 影响的物理图像 .与相关实验资料比较表明 ,基本关系式得到的介电常数εr 随晶格畸变c a的变化规律 ,与相关实验结果相比较 ,两者吻合得很好 .最后并对该基本关系式的适用范围 ,和范围以外存在的相对偏差产生的物理原因进行了讨论 .必须强调指出 ,本文建立的基本关系式实质上适用于所有四方相区钙钛矿结构材料晶格畸变对介电常数影响 . 展开更多
关键词 晶格畸变 常数 四方相 PZT 钙钛矿结构 压电铁电材料
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Ferroelectric materials for vibrational energy harvesting 被引量:2
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作者 SONG JunDong WANG Jin 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第7期1012-1022,共11页
Energy harvesting is an appealing technology that makes use of the ambient energy which is otherwise wasted. Piezoelectric materials directly convert the elastic energy to the electric energy, and thus have a great ad... Energy harvesting is an appealing technology that makes use of the ambient energy which is otherwise wasted. Piezoelectric materials directly convert the elastic energy to the electric energy, and thus have a great advantage in scavenging vibrational energy for simplicity in device structure with relatively high power density. This paper provides an overview on the research of piezoelectric materials in energy harvesting in recent decades, from basics of piezoelectricity and working principle of energy harvesting with piezoelectric materials, to the progress of development of high-performance piezoelectrics including ceramics, single crystals and polymers, then to experimental attempts on the device fabrication and optimization, finally to perspective applications of piezoelectric energy harvesting(PEH). The criteria for selection of materials for PEH applications are introduced. Not only the figure of merit but also maximum allowable stress of materials are taken into account in the evaluation of their potential in achieving high energy density and output power density. The influence of the device configuration on the performance is also acknowledged and discussed. The magnitude and distribution of induced stress in the piezoelectric unit upon excitation by the vibration source play an important role in determining the output power density and can be tuned via proper design of device configuration without changing its resonant frequency. Approaches to address the issue of frequency match accompanying with the resonant mode are illustrated with literature examples. Usage of PEH devices can be extended to a variety of vibration sources in everyday life as well as in nature. Some appealing applications of PEH, such as in implantable and wearable devices, are reviewed. 展开更多
关键词 energy harvesting ferroelectric materials piezoelectricity figure of merit applications
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