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介电聚酰亚胺薄膜研究进展 被引量:2
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作者 查俊伟 刘雪洁 +1 位作者 董晓迪 万宝全 《高分子通报》 CAS CSCD 北大核心 2023年第8期998-1014,共17页
聚酰亚胺电介质是电气工程、电子信息技术、航空航天等领域的一类重要的绝缘材料,然而在实际应用中依然存在材料设计制备、结构-性能关系与性能调控等方面的问题尚未解决。多重应用场景下介电性能的不匹配限制了聚酰亚胺的创新式发展,... 聚酰亚胺电介质是电气工程、电子信息技术、航空航天等领域的一类重要的绝缘材料,然而在实际应用中依然存在材料设计制备、结构-性能关系与性能调控等方面的问题尚未解决。多重应用场景下介电性能的不匹配限制了聚酰亚胺的创新式发展,成为制约电工、电子信息航空航天领域发展的重要问题。本文基于影响电介质薄膜电-热特性的基本原理,从分子结构改性和复合结构优化等方面详细综述了调控聚酰亚胺高/低介电特性、热稳定性和绝缘强度等综合性能的研究方法和内部机理,总结了当前聚酰亚胺薄膜在能源系统和电子器件中残存的问题及面临的挑战,并为聚酰亚胺薄膜未来的发展及应用提供有意义的指导。 展开更多
关键词 材料 聚酰亚胺薄膜 高/低介电
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Composition dependence of phase structure and electrical properties of(1-y)Bi_(1-x)Nd_xFeO_(3-y)BiScO_3 ceramics
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作者 TAO Hong WU JiaGang 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第7期1029-1035,共7页
In this work, we have studied a new lead-free ceramic of(1-y)Bi1-xNdxFeO3-yBiScO3(0.05≤x≤0.15 and 0.05≤y≤0.15) prepared by a conventional solid-state method, and the influences of Nd and Sc content on their ph... In this work, we have studied a new lead-free ceramic of(1-y)Bi1-xNdxFeO3-yBiScO3(0.05≤x≤0.15 and 0.05≤y≤0.15) prepared by a conventional solid-state method, and the influences of Nd and Sc content on their phase structure and electrical properties were investigated in detail. The ceramics with 0.05≤x≤0.10 and 0.05≤y≤0.15 belong to an R3 c phase, and the rhombohedral-like and orthorhombic multiphase coexistence is established in the composition range of 0.125≤x≤0.15 and y=0. The electrical properties of the ceramics can be enhanced by modifying x and y values. The highest piezoelectric coefficient(d33~51 p C/N) is obtained in the ceramics with x=0.075 and y=0.125, which is superior to that of a pure BiFeO3 ceramic. In addition, a lowest dielectric loss(tan δ~0.095%, f=100 k Hz) is shown in the ceramics with x=0.15 and y=0 due to the involvement of low defect concentrations, and the improved thermal stability of piezoelectricity at 20–600℃ is possessed in the ceramics. We believe that the ceramics can play a meaningful role in the high-temperature lead-free piezoelectric applications. 展开更多
关键词 BiFeO_3 ceramics composition design phase structure piezoelectric properties
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