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Synthesis and Physical Properties of Group 14 Intermetallic Clathrates.

机译:14族金属互化物的合成及其物理性质。

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摘要

The search of materials relevant for thermoelectric and magnetocaloric applications, as well as materials that interact with light, is an important aspect of the materials science. Such materials can be used for solid-state power generation and refrigeration, as light sources, detectors, or controllers. Intermetallic clathrates have long been of interest for the materials science research. The promise these materials hold for useful applications ranges from thermoelectrics to photovoltaics and optoelectronics to potentially ultra-hard materials and magnetic cooling applications. Their unique physical properties are intimately related to their intriguing structural properties. Thus a fundamental understanding of the chemistry and physics of inorganic clathrates offers the possibility to assess their potential for use in the various applications mentioned above.;In this work the selective, phase pure, single-crystal growth of A xSi46 and AySi 136 (A = Na, K) intermetallic clathrates by the new vapor-phase intercalation method is presented. The approach appears promising for accessing regions of the equilibrium diagrams for Na-Si and K-Si clathrates that can be otherwise difficult to reach due to the greatly differing properties of the constituent elements. Physical properties of these materials were investigated in terms of single-crystal diffraction, electrical and thermal properties measurements.;The synthesis and structural properties of single crystals of Na xSi136 are presented. A two-step synthetic approach was employed for the synthesis of NaxSi136 which also allowed for low temperature transport measurements of polycrystalline NaxSi136.;The potential of the Eu8Ga16Ge30 type-I and VIII - EuO composites for magnetocaloric applications is discussed. The type-I clathrate - EuO composites hold promise for active magnetic refrigeration around 70 K.
机译:对与热电和磁热应用有关的材料以及与光相互作用的材料的搜索是材料科学的重要方面。此类材料可用作光源,检测器或控制器的固态发电和制冷。金属间化合物包合物长期以来一直是材料科学研究的兴趣。这些材料可用于有用的应用,包括从热电到光伏和光电,再到潜在的超硬材料和磁冷却应用。它们独特的物理性质与它们有趣的结构性质密切相关。因此,对无机包合物的化学和物理原理有一个基本的了解为评估它们在上述各种应用中的潜力提供了可能性。在这项工作中,AxSi46和AySi 136(A = Na,K)通过新的气相插层方法提出了金属互化物包合物。该方法似乎有望用于进入Na-Si和K-Si包合物的平衡图区域,否则由于组成元素的性质差异很大,这些区域可能很难达到。通过单晶衍射,电学和热学性能的研究,研究了这些材料的物理性能。提出了Na xSi136单晶的合成和结构性能。采用两步合成法合成NaxSi136,也可用于多晶NaxSi136的低温迁移测量。讨论了Eu8Ga16Ge30 I型和VIII-EuO复合材料在磁热方面的潜力。 I型包合物-EuO复合材料有望在70 K左右实现主动磁制冷。

著录项

  • 作者

    Stefanoski, Stevce.;

  • 作者单位

    University of South Florida.;

  • 授予单位 University of South Florida.;
  • 学科 Engineering Materials Science.;Chemistry Inorganic.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 174 p.
  • 总页数 174
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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