标题: | 多铁材料铁酸铋磊晶薄膜应变诱发形态相边界之研究 Morphotropic Phase Boundary Induced by Epitaxial Strain in BiFeO3 |
作者: | 王智弘 Wang, Chih-Hung 朱英豪 Chu, Ying-Hao 材料科学与工程学系 |
关键字: | 多铁材料;铁酸铋;形态相边界;压电;磊晶;混合相;Multiferroic;BiFeO3;Morphotropic Phase Boundary;Piezoelectricity;Epitaxy;Mixed Phase |
公开日期: | 2009 |
摘要: | 现代的功能型智慧材料,如铁磁或者压电材料,许多都是利用化学合成金属的典型方式,使多相的材料演化同时具有两相存在的边界,这样的一个边界通常具有很大的外延反应。举凡参杂 Mn之磁性材料中浮现的庞磁阻效应、参杂的铜氧化物材料中的高温超导体,或者具有压电效应的弛缓性铁电材料。举例来说,如Pb(Zrx,Ti1-x)O3 (PZT)、Pb(Mg0.33,Nb0.67)O3-PbTiO3 (PMN-PT)、Pb(Zn0.33,Nb0.67)O3-PbTiO3 (PZN-PT)在所组成相结构的边界中,可以测量到非常大的压电系数,这些包含Tetragonal相与Rhombohedral相的相边界中,由于巨大的压电效应,使得PZT、PMN-PT、PZN-PT这些材料带来广泛的应用范围,包含从微尺寸定位器到太阳能感应制动器。 本研究是报告属于钙钛矿的铁酸铋- BiFeO3 (BFO) ,经由磊晶薄膜成长于LaAlO3 (LAO)基板上,由于薄膜上应变的诱发,薄膜可同时拥有 Tetragonal相以及Rhombohedral相,两相的相边界存在着’Morphotropic Phase Boundary’ (MPB) 特性。相较于众多文献报告中的PZT存在之MPB性质,BFO在自身单成份的薄膜里便能拥有MPB特性,值得一提的是,BFO不似PZT一般含高污染的铅 (Pb) 元素,在本研究的量测中,BFO铁电、压电特性的量测中,更胜PZT一筹,因此,BFO压电薄膜无疑提供了无铅世界中一种非常好的选择。 在本研究中,我们试着以一些仪器来分析在BFO薄膜表面上这样的界面,研究这种形成的动态过程。首先我们使用Laser MBE磊晶成长BFO薄膜,并搭配高压RHEED的监控系统,因此,我们得到RHEED 绕射图与振荡曲线,藉以厘清究竟是什么温度下,形成这么一个过渡相。再者,我们利用温度变化的RSM倒晶格分布图,来理解相与相边界结构上的演化。最后扫描式探针显微镜 (SPM) 将会为我们扫取AFM表面形态图与PFM铁电区域分析图,搭配温度变化的参数来检视相边界静态与弹性上的变化,所有在这界面上与动力学有关的范围,如结构、表面相形态、铁电区域特性的形成,将一一发表在这篇研究报告上。 Modern functional materials, for example ferromagnets and piezoelectrics, are typically chemically complex and exhibit the co-existence of multiple phases that evolve as a consequence of chemical alloying. In such materials, huge responses to external stimuli are often found at phase boundaries . Examples of the discovery of such behavior include the emergence of colossal magnetoresistance in doped manganites, high temperature superconductivity in doped cuprates, and large piezoelectric esponses in relaxor ferroelectrics . he large piezoelectric coefficients in Pb(Zrx,Ti1-x)O3 (PZT), Pb(Mg0.33,Nb0.67)O3-PbTiO3 (PMN-PT), and b(Zn0.33,Nb0.67)O3-PbTiO3 (PZN-PT) systems, for example, occur in compositions that lie at the boundary between two crystal structures, a rhombohedral-to-tetragonal phase boundary . These giant piezoelectric responses have made PZT, PMN-PT, and PZN-PT the materials of choice for a variety of applications ranging from micro-positioners to acoustic sensing in sonar. In this report, we demonstrate that epitaxial strain can be used to drive the formation of a morphotropic phase boundary (MPB) and exhibit tetragonal phase as well as rhombohedral phase in pervoskite-BiFeO3 (BFO) thin film grown on LaAlO3 (LAO) substrate. Comparing to MPBs which are often observed in mixed perovskites such in PZT family, the observation of BFO boundaries can exist in a single-component. BFO deserves to be mentioned with huge piezoelectrics and its lead-free component. the observation of such boundaries in a BFO thin film is of great interest for potential applications in next generation . In this study, we have tried to figure out the kinetics on formation of such a new interface by using various techniques. First of all, we grow BFO films on LaAlO3 substrates controlled by pulsed laser deposition with high pressure RHEED. We have also used RHEED patterns as well as oscillations to identify the temperature of phase transitions. Reciprocal space mapping as a function of temperature is used to understand the structural evolution of this phase boundary. In final part, topography and ferroelectric domain patterns as a function of temperature have also been probed by scanning probe microscopy (SPM) to study the electrostatic and elastic boundary conditions of this new interface. The correlation between structure, surface topography, and ferroelectric domain pattern will be addressed to understand the kinetics on formation of this new interface. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT079701508 http://hdl.handle.net/11536/44183 |
显示于类别: | Thesis |
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