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通过协同设计实现具有超高压电性能的无铅织构陶瓷。

Lead-Free Textured Ceramics with Ultrahigh Piezoelectric Properties by Synergistic Design.

作者信息

Kou Qiangwei, Yang Bin, Lei Haobin, Yang Shuai, Zhang Zerui, Liu Linjing, Xie Hang, Sun Yuan, Chang Yunfei, Li Fei

机构信息

Functional Materials and Acousto-Optic Instruments Institute, School of Instrumentation Science and Engineering, Harbin Institute of Technology, Harbin, Heilongjiang 150080, People's Republic of China.

Electronic Materials Research Laboratory (Key Lab of Education Ministry), State Key Laboratory for Mechanical Behavior of Materials and School of Electronic Science and Engineering, Xi'an Jiaotong University, Xi'an, Shaanxi 710049, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2023 Aug 9;15(31):37706-37716. doi: 10.1021/acsami.3c07637. Epub 2023 Jul 31.

Abstract

Lead-free ceramics with superior piezoelectric performance are highly desirable in various electromechanical applications. Unfortunately, it is still challenging to achieve significantly enhanced piezoelectricity without sacrificing the Curie temperature () in current BaTiO-based ceramics. To address this issue, a synergistic design strategy of integrating crystallographic texture, multiphase coexistence, and doping engineering is proposed here. Highly [001]-textured (BaCa)(TiZrSn)O ceramics are synthesized through Li-related liquid-phase-assisted templated grain growth, with improved grain orientation quality ( of ∼96% and of ∼0.16) achieved at substantially reduced texture temperatures. Encouragingly, ultrahigh comprehensive piezoelectric properties, i.e., piezoelectric coefficient of ∼820 pC N, electrostrain / of ∼2040 pm V, and figure of merit × of ∼23.5 × 10 m N, are simultaneously obtained without sacrificing , which are also about 2.3, 2.4, and 4.3 times as high as those of non-textured counterpart, respectively. On the basis of the experiments and theoretical modeling, the outstanding piezoelectric performance is attributed to more effective exploration of property anisotropy and easier polarization rotation/extension, owing to improved grain orientation quality, dissolution of templates into oriented grains, coexisting + + phases, and domain miniaturization. This work provides important guidelines for developing novel ceramics with outstanding piezoelectric properties and can largely expand application fields of textured BaTiO-based ceramics into high-performance and multilayer electronic devices.

摘要

具有优异压电性能的无铅陶瓷在各种机电应用中备受青睐。不幸的是,在当前的钛酸钡基陶瓷中,在不牺牲居里温度()的情况下实现显著增强的压电性仍然具有挑战性。为了解决这个问题,本文提出了一种将晶体织构、多相共存和掺杂工程相结合的协同设计策略。通过锂相关的液相辅助模板晶粒生长合成了高度[001]织构的(BaCa)(TiZrSn)O陶瓷,在大幅降低的织构温度下实现了改善的晶粒取向质量(择优取向度约为96%,极轴比约为0.16)。令人鼓舞的是,在不牺牲居里温度的情况下,同时获得了超高的综合压电性能,即压电系数约为820 pC/N,电致应变/约为2040 pm/V,以及品质因数×约为23.5×10 m/N,分别是非织构对应物的约2.3倍、2.4倍和4.3倍。基于实验和理论建模,优异的压电性能归因于由于晶粒取向质量的提高、模板溶解到取向晶粒中、共存的++相以及畴的细化,对性能各向异性的更有效利用和更容易的极化旋转/扩展。这项工作为开发具有优异压电性能的新型陶瓷提供了重要指导,并可将织构钛酸钡基陶瓷的应用领域大幅扩展到高性能和多层电子器件中。

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