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Combinatorial investigation of intermetallics using electron-beam deposition.

机译:使用电子束沉积对金属间化合物进行组合研究。

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摘要

We have systematically studied subtle changes in physical properties of intermetallics using the combinatorial strategy where a large number of samples with systematically changed parameters can be rapidly studied. We have developed a new combinatorial electron-beam (e-beam) deposition chamber which allows us to perform layer-by-layer deposition as well as co-deposition. For my thesis, two particular topics of significant technological impacts involving intermetallic systems were investigated. They are exchange-coupled soft/hard magnetic bilayer systems and hydrogen storage Mg--(transiton metal) (TM) binary systems. The first topic is discussed in Chapter 2 -- Chapter 4, and the second topic is duscussed in Chapter 5 -- Chapter 7. Summary of the thesis work and future plans are discussed in Chapter 8.;We have studied the effect of magnetic parameters of the soft layer on the exchange coupling behavior of soft/hard magnetic bilayer systems. The magnetic parameters of the soft layer were systematically changed in a combinatorial manner by changing the composition of the soft layer. The exchange coupling behavior was monitored by M-H hysteresis loops taken by a magneto-optical Kerr effect (MOKE) measurement set up. The MOKE M-H hysteresis loops successfully delineated the exchange coupling behavior dependence on the magnetic parameters.;We have also studied the effect of the crystallinity and grain-texturing of the hard layer on the exchange coupling behavior of hard/soft magnetic bilayer systems. The crystallinity and the degree of grain-texturing were controlled by growth temperature and the post-annealing process of the hard layer. The MOKE M-H hysteresis loops successfully revealed that attaining a single phase, single orientation hard layer is the key to achieving a good exchange coupling behavior.;We have developed a new infrared (IR) imaging set up to perform high-throughput screening of hydrogen storage properties of Mg-TM systems. In order to demonstrate the utility of the set up, we studied promising Mg-TM binary systems. We have fabricated Mg-TM binary composition spread thin films using the combinatorial e-beam chamber. For each composition, IR intensity as a function of measurement time were monitored by analyzing images collected continuously and periodically during measurements. The change in IR intensity curves successfully gave systematic trends in hydrogen absorption/desorption properties of Mg-TM composition spread thin films.;We have established a novel way to use an IR imaging and succeeded to measure propagation of hydride formation from the top of hydrogen storage thin film. IR images of thickness gradient Mg0.95Ti0.05 thin films enabled us to directly determine the propagation of the hydride formation front quantitatively.
机译:我们已经使用组合策略系统研究了金属间化合物的物理性质的细微变化,在该策略中,可以快速研究大量具有系统变化参数的样品。我们已经开发了一种新的组合电子束(e-beam)沉积室,它使我们能够进行逐层沉积以及共沉积。在我的论文中,研究了涉及金属间体系的重大技术影响的两个特定主题。它们是交换耦合的软/硬磁双层系统和储氢Mg-(过渡金属)(TM)二元系统。第一个主题在第二章至第四章中讨论,第二个主题在第五章至第七章中讨论。第八章讨论论文工作和未来计划的总结;我们研究了磁参数的影响软层对软/硬磁性双层系统交换耦合行为的影响。通过改变软层的组成,以组合方式系统地改变了软层的磁参数。通过磁光克尔效应(MOKE)测量装置拍摄的M-H磁滞回线来监控交换耦合行为。 MOKE M-H磁滞回线成功地描述了交换耦合行为对磁参数的依赖性。;我们还研究了硬层的结晶度和晶粒织构对硬/软磁双层体系交换耦合行为的影响。结晶度和晶粒组织化程度由生长温度和硬质层的后退火工艺控制。 MOKE MH磁滞回线成功地揭示了获得单相,单向硬层是实现良好的交换耦合行为的关键。我们已经开发出一种新的红外(IR)成像装置,可以对氢存储进行高通量筛选Mg-TM系统的特性。为了演示该设置的实用性,我们研究了有前途的Mg-TM二进制系统。我们已经使用组合电子束腔室制作了Mg-TM二元组成的分散薄膜。对于每种组合物,通过分析在测量过程中连续和定期收集的图像,可以监视作为测量时间函数的IR强度。 IR强度曲线的变化成功地给出了Mg-TM成分扩散薄膜的氢吸收/解吸特性的系统趋势。;我们建立了一种使用IR成像的新方法,并成功地测量了氢从氢顶部形成的氢化物的扩散储存薄膜。厚度梯度为Mg0.95Ti0.05薄膜的红外图像使我们能够直接直接确定氢化物形成前沿的扩散。

著录项

  • 作者

    Oguchi, Hiroyuki.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 172 p.
  • 总页数 172
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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