首页> 外文学位 >Development of a non-contact scanning temperature sensing method and characterization of zT in Pnictogen-Chalcogen alloys.
【24h】

Development of a non-contact scanning temperature sensing method and characterization of zT in Pnictogen-Chalcogen alloys.

机译:光子-硫属合金中非接触式扫描温度传感方法的开发和zT的表征。

获取原文
获取原文并翻译 | 示例

摘要

As an environment-friendly energy source, thermoelectric materials have attracted increasing interests. Due to the characteristics of long lasting, stability and no moving parts, they have been widely used in cooling and powering micro-devices. Development of the characterization technique and the understanding of materials are two faces of a coin. In this thesis, we will include both the development of a characterization technique and the characterization and analysis of three series of Pnictogen-Chalcogen based thermoelectric alloyed materials.;The thermoelectric performance is described by the figure of merit zT value which is the product of the z value and the temperature. The three parameters that determine the z value, the Seebeck coefficient, the thermal conductivity and the electrical conductivity are all functions of temperature. And the performance of a thermoelectric micro-device depends on the temperature gradient and its working temperature. Therefore, an in-situ micro-scale temperature characterization method is crucial for the development of thermoelectric materials as well as for evaluating the performance of thermoelectric micro-devices. Scanning thermal microscopy has been proved to be an effective tool for temperature mapping and requires minimal sample preparation. However, quantitative temperature sensing with a thermal probe is still challenging due to the complex heat transfer mechanisms. In this work, we developed a scanning probe technique which is able to perform micro-scale quantitative temperature scanning in the noncontact mode. The heater-on and heater-off effect related to the global heat transfer effect has been observed and discussed. Our study showed that the global heat transfer effect is counted in the thermal contact parameters calibrated with the micro-heater on, by using a one dimensional heat transfer model of the probe. With a two dimensional heat transfer model of the sample, quantitative temperature sensing has been successfully performed on film-on-substrate samples.;There are two general ways of enhancing the thermoelectric property. One route is to increase the power factor and the other way is to reduce the phonon contribution to the thermal conductivity. Bismuth telluride based materials have the highest ZT values around the room temperature. Since bismuth selenide, bismuth telluride and antimony telluride belong to the same space group and have similar chemical properties, it is easy for them to form isomorphous solid solutions. Bismuth telluride and antimony telluride are usually added into bismuth telluride to enhance the thermoelectric property. In this work, we characterized and analyzed the transport properties of two ternary and one quaternary systems of thermoelectric alloys, each of which were fabricated by mixing and sintering two of the bismuth telluride, antimony telluride and bismuth selenide starting compounds. We performed a point defect based analysis of the transport properties of the alloys. Although alloying is typically used as a route to reduce the lattice thermal conductivity, our study of alloys with different compound ratios showed a wide range of electrical property tuning, which provides useful information and the possibility of using point defects as a tool of improving thermoelectric properties. And the systematic study of the alloy effect in the quaternary system was performed for the first time.
机译:作为一种环境友好的能源,热电材料引起了越来越多的兴趣。由于具有持久,稳定且无移动部件的特性,它们已被广泛用于冷却和供电的微型设备。表征技术的发展和对材料的理解是硬币的两个方面。在本文中,我们将包括表征技术的开发以及对三种基于光子-硫族元素的热电合金材料的表征和分析。;热电性能由品质因数zT值描述,该值是产品的z值和温度。确定z值的三个参数,塞贝克系数,热导率和电导率都是温度的函数。而且,热电微器件的性能取决于温度梯度及其工作温度。因此,原位微尺度温度表征方法对于开发热电材料以及评估热电微型器件的性能至关重要。扫描热显微镜已被证明是进行温度测绘的有效工具,并且只需最少的样品准备。然而,由于复杂的传热机制,用热探针进行定量温度感测仍然具有挑战性。在这项工作中,我们开发了一种扫描探针技术,该技术能够以非接触模式执行微型定量温度扫描。已经观察到并讨论了与整体传热效果有关的加热器开启和关闭的效果。我们的研究表明,通过使用探头的一维传热模型,在通过微型加热器校准的热接触参数中计算了整体传热效果。利用样品的二维热传递模型,已经成功地对基膜上样品进行了定量温度感测。有两种提高热电性能的通用方法。一种途径是增加功率因数,另一种途径是减少声子对热导率的贡献。碲化铋基材料在室温附近具有最高的ZT值。由于硒化铋,碲化铋和碲化锑属于同一空间群,并且具有相似的化学性质,因此它们很容易形成同构的固溶体。通常将碲化铋和碲化锑添加到碲化铋中以增强热电性能。在这项工作中,我们表征和分析了热电合金的两个三元体系和一个四元体系的输运性能,每个体系都是通过混合和烧结两种碲化铋,碲化锑和硒化铋起始化合物制成的。我们对合金的传输性能进行了基于点缺陷的分析。尽管通常将合金化用作降低晶格热导率的途径,但是我们对具有不同配比的合金的研究显示出广泛的电性能调节范围,这提供了有用的信息以及使用点缺陷作为改善热电性能的工具的可能性。并首次对四元体系中的合金效应进行了系统的研究。

著录项

  • 作者

    Han, Liang.;

  • 作者单位

    Rensselaer Polytechnic Institute.;

  • 授予单位 Rensselaer Polytechnic Institute.;
  • 学科 Mechanical engineering.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 94 p.
  • 总页数 94
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号