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Enhanced ferroelectric and improved leakage of BFO-based thin films through increasing entropy strategy
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作者 Dongfei Lu Guoqiang Xi +5 位作者 Hangren Li Jie Tu Xiuqiao Liu Xudong Liu Jianjun Tian linxing zhang 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS 2024年第10期2263-2273,共11页
BiFeO_(3)(BFO)has received considerable attention as a lead-free ferroelectric film due to its large theoretical remnant polariza-tion.However,BFO suffers from a large leakage current,resulting in poor ferroelectric p... BiFeO_(3)(BFO)has received considerable attention as a lead-free ferroelectric film due to its large theoretical remnant polariza-tion.However,BFO suffers from a large leakage current,resulting in poor ferroelectric properties.Herein,the sol-gel method was used to deposit a series of BFO-based thin films on fluorine-doped tin oxide substrates,and the effects of the substitution of the elements Co,Cu,Mn(B-site)and Sm,Eu,La(A-site)on the crystal structure,ferroelectricity,and leakage current of the BFO-based thin films were invest-igated.Results confirmed that lattice distortion by X-ray diffraction can be attributed to the substitution of individual elements in the BFO-based films.Sm and Eu substitutions contribute to the lattice distortion in a pseudo-cubic structure,while La is biased toward pseudo-tet-ragonal.Piezoelectric force microscopy confirmed that reversible switching of ferroelectric domains by nearly 180°can be realized through the prepared films.The ferroelectric hysteresis loops showed that the order for the polarization contribution is as follows:Cu>Co>Mn(B-site),Sm>La>Eu(A-site).The current density voltage curves indicated that the order for leakage contribution is as follows:Mn<Cu<Co(B-site),La<Eu<Sm(A-site).Scanning electron microscopy showed that the introduction of Cu elements facilitates the formation of dense grains,and the grain size distribution statistics proved that La element promotes the reduction of grain size,leading to the increase of grain boundaries and the reduction of leakage.Finally,a Bi_(0.985)Sm_(0.045)La_(0.03)Fe_(0.96)Co_(0.02)Cu_(0.02)O_(3)(SmLa-CoCu)thin film with a qualitative leap in the remnant polarization from 25.5(Bi_(0.985)Sm_(0.075)FeO_(3))to 98.8µC/cm^(2)(SmLa-CoCu)was prepared through the syner-gistic action of Sm,La,Co,and Cu elements.The leakage current is also drastically reduced from 160 to 8.4 mA/cm^(2)at a field strength of 150 kV/cm.Thus,based on the increasing entropy strategy of chemical engineering,this study focuses on enhancing ferroelectricity and decreasing leakage current,providing a promising path for the advancement of ferroelectric devices. 展开更多
关键词 increasing entropy synergistic ferroelectric film remnant polarization leakage current
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超四方相钛酸铅铁电薄膜的超快光致应变
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作者 张林兴 孙大睿 +4 位作者 柴茂盛 邢献然 陈骏 张兵兵 田建军 《Science China Materials》 SCIE EI CAS CSCD 2021年第7期1679-1686,共8页
近十年来,由压电效应和光电效应进行铁电耦合的超快光致应变一直是人们关注的焦点.这使得超快光致应变在超快光存储器、应变工程传感器和制动器等领域呈现出广泛的应用前景.在铁电材料中,光致载流子屏蔽去极化场被普遍认为是超快光致应... 近十年来,由压电效应和光电效应进行铁电耦合的超快光致应变一直是人们关注的焦点.这使得超快光致应变在超快光存储器、应变工程传感器和制动器等领域呈现出广泛的应用前景.在铁电材料中,光致载流子屏蔽去极化场被普遍认为是超快光致应变的机理,而热应变通常被作为偏移误差而被忽视,尚未得到系统研究,导致不必要的混淆.本文利用高重复率超快X射线衍射研究了复合外延铁电薄膜的正、负热膨胀效应,同时考虑了压电效应和光伏效应.在超快应变中,正/负热效应和压电/光伏效应的耦合得到证实和调控.在不同轴比的样品中,由于热效应的不同,晶格响应呈现相反的状态.其最大超快光致应变可达0.24%,与传统铁电的光致应变相当.热效应和铁电效应在诱导应变中的相互作用可以促进光、热、电耦合的多样化应用. 展开更多
关键词 压电效应 光存储器 偏移误差 光伏效应 电耦合 光电效应 铁电材料 铁电薄膜
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