标题: 新颖异质磊晶钴铁氧可挠式高磁致伸缩效应之透明铁磁薄膜之研发
Novel Flexible, Ferromagnetic and Transparent Thin Film with Large Magnetostrictive Effect Composed of Heteroepitaxial CoFe2O4
作者: 王志国
朱英豪
Wang, Chih-Kuo
Chu, Ying-Hao
材料科学与工程学系所
关键字: 可挠式薄膜;高磁致伸缩系统;钴铁氧;白云母;钛酸锶;透明铁磁膜;Flexible thin film;Large magentostriction system;CoFe2o4;Muscovite;SrTiO3;Transparent Ferromagnetic film
公开日期: 2016
摘要: 本研究欲研发新颖的磊晶钴铁氧可挠式高磁致伸缩效应之透明铁磁薄膜,吾人将研究主要分为两部分,其一为透明磊晶钴铁氧(CoFe2O4, CFO)-钛酸锶(SrTiO3, STO)铁磁体异质接面系统,其二为具高磁致伸缩效应的磊晶异质钴铁氧可挠式系统,此研究皆透过脉冲雷射沉积法制备样品。以X光绕射分析证实CFO-STO的磊晶关系,CFO[100]||STO[100]、CFO[010]||STO[010]与CTO[001]||STO[001],原子力显微镜与穿透电子显微镜的结果呈现两种材料互相缠绕的结构特征,称其为体异质接面系统,展现CFO奈米晶体与于STO材料进行结构耦合,超导量子干涉仪量进行磁性分析,显示结构耦合所产生的应变现象能够主导磁性与异向性,能够藉由改变CFO奈米晶体与STO的组成比例达成调控。而吸收光谱与X光辞圆偏振光谱进一步支持整个体异质接面系统能够不需牺牲太多的磁化强度,就能达成高光穿透率的目标,此项研究不仅提供一个透明且带有铁磁性的磁铁无须在透光度与磁化强度间做取舍而制备出来。另外也成功制备一种由可挠式白云母基板与异质磊晶CFO膜所组成的新颖磁致伸缩双层样品系统,藉由反射式高能电子绕射仪发现CFO膜遵循逐层的成长模式,以X光绕射分析证实CFO与Mica的磊晶关系,CFO[111]||Mica[001]、CFO[1-10]||Mica[010]与CFO[-1-12]||Mica[100],SQUID仪器中和静磁力显微镜中分析结果呈现CFO/Mica异质结构的样品具有抵抗形变的强韧磁性,另外数位全像显微镜演示可透过磁力控制CFO/Mica异质结构的样品形变能力与计算此样品具有极大的磁致伸缩表现。最后将前两部分的研究合并在一起,发现确实能够在Mica上成长由CFO与STO组合成复合材料系统,然而欲透过STO基板上的制程转移至可挠的Mica时,虽磁性表现与第二部分的实验雷同,但无法展现良好的透光特性,而我们期许利用复合材料系统概念制备一个新颖可挠透明铁磁薄膜。
In this study, we expect to develop an novel flexible, ferromagnetic and transparent thin film with large magnetostrictive effect composed of heteroepitaxial CoFe2O4. The study is mainly separated into two parts. One is transparent epitaxial CoFe2O4-SrTiO3 bulk heterojunction system, and the other one is flexible thin film with large magnetostrictive effect composed of heteroepitaxy CoFe2O4. Samples were fabricated through pulsed laser deposition method in this study. The epitaxial relationships, CFO[100]||STO[100], CFO[010]||STO[010] and CTO[001]||STO[001], between CFO and STO are confirmed by x-ray diffraction analysis. Atomic force microscopy and transmission electron microscopy images show CFO and STO entangling together, and this kind of system is called bulk heterojunction system. Superconductive quantum interference device is conducted to measure magnetic properties. The magnetization and magnetic anisotropy are dominated by the strain, which can be tuned by the composition ratio of CFO and STO. The transmission spectrum and x-ray magnetic circular dichroism further prove that it doesn’t need to sacrifice too much magnetization to achieve high transmission in the bulk heterojunction system. In another part of study, layer-by-layer growing mode in CFO film is discovered by reflection high energy electron diffraction. The epitaxial relationships, CFO[111]||Mica[001], CFO[11 ̅0]||Mica[010] and CFO[(11) ̅2]||Mica[100], between CFO and Mica are confirmed by x-ray diffraction analysis. CFO/Mica bimorph has solid magnetism to resist the deformation from SQUID and magnetic force microscopy analysis. Digital holographic microscopy shows that we can deform CFO/Mica bimorph by appling external magnetic field, and also determine high magnetostrictive behavior in this system. Then we combine these two parts of study. CFO and STO nanocomposite system can successfully fabricated on muscovite substrate. Although the magnetic behavior is similar to the second part, this system can’t exhibit excellent transmission. We expect to fabricate a novel transparent flexible magnetic film via the nanocomsite system.
URI: http://etd.lib.nctu.edu.tw/cdrfb3/record/nctu/#GT070351527
http://hdl.handle.net/11536/139102
显示于类别:Thesis