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Synthesis, characterization and study of physical properties of novel M(n+1)AX(n) compounds.

机译:新型M(n + 1)AX(n)化合物的合成,表征和物理性质的研究。

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摘要

Mn+1AXn compounds, the ternary layered nanolaminates have gathered momentum in the last decade since its advent because of their unusual but exciting properties. These technologically important compounds combine some of the best properties of metals and ceramics. Like ceramics they are refractory, oxidation resistant, elastically stiff and relatively light. They also exhibit metallic properties like excellent machinability, thermal and electrical conductivity.;This dissertation concentrates on the synthesis of germanium-based 211 Mn+1AXn compounds. The main objective of the research was to synthesize predominantly single phase samples of Cr2GeC, V2GeC and Ti2GeC. Another goal was to study the effect of solid substitutions on the M-site of Mn+1AXn compounds with Ge as an A-element. This study is in itself the first to demonstrate the synthesis of (Cr0.5V0.5)2GeC a novel Mn+1AXn compound. Scanning electron microscopy coupled with energy dispersive spectroscopy, x-ray diffraction and electron probe microanalysis were employed to confirm the presence of predominantly single phase samples of M2GeC compounds where M = Ti, V, Cr and (Cr 0.5V0.5).;A large part of the dissertation also focuses on the effect of the compressibility on the Ge-based 211 Mn+1AXn compounds with the aid of diamond anvil cell and high energy synchrotron radiation. This study also concentrates on the stability of these compounds at high temperature and thereby determines its suitability as high temperature structural materials. In order to better understand the effect of substitutions on A-site of 211 Mn+1 AXn compounds under high pressure and high temperature, a comparison is made with previously reported 211 Mn+1AXn compounds with Al, Ga and S as A-site elements.
机译:Mn + 1AXn化合物,即三元层状纳米层压板,自问世以来,在过去十年中获得了发展势头,因为它们具有非同寻常但令人兴奋的特性。这些技术上重要的化合物结合了金属和陶瓷的某些最佳性能。像陶瓷一样,它们是耐火的,抗氧化的,具有弹性的且相对轻的。它们还具有优异的可加工性,导热性和导电性等金属性能。;本论文着重于锗基211 Mn + 1AXn化合物的合成。该研究的主要目的是合成Cr2GeC,V2GeC和Ti2GeC的主要单相样品。另一个目标是研究以Ge为A元素的固体取代对Mn + 1AXn化合物M位点的影响。这项研究本身是第一个证明(Cr0.5V0.5)2GeC新型Mn + 1AXn化合物的合成的研究。扫描电子显微镜与能量色散光谱,X射线衍射和电子探针显微分析相结合,以确认M2GeC化合物主要存在单相样品,其中M = Ti,V,Cr和(Cr 0.5V0.5)。论文的大部分内容还着眼于借助金刚石砧室和高能同步加速器辐射,可压缩性对Ge基211 Mn + 1AXn化合物的影响。这项研究还集中于这些化合物在高温下的稳定性,从而确定了其作为高温结构材料的适用性。为了更好地理解高压和高温下211 Mn + 1 AXn化合物的取代对A-位的影响,与以前报道的以Al,Ga和S为A-位元素的211 Mn + 1AXn化合物进行了比较。 。

著录项

  • 作者

    Phatak, Nishad Arvind.;

  • 作者单位

    Florida International University.;

  • 授予单位 Florida International University.;
  • 学科 Engineering Mechanical.;Engineering Metallurgy.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 137 p.
  • 总页数 137
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;冶金工业;工程材料学;
  • 关键词

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