首页> 外文期刊>Advanced energy materials >Realizing High Energy Conversion Efficiency in a Novel Segmented-Mg_3(Sb, Bi)_2/Cubic-GeTe Thermoelectric Module for Power Generation
【24h】

Realizing High Energy Conversion Efficiency in a Novel Segmented-Mg_3(Sb, Bi)_2/Cubic-GeTe Thermoelectric Module for Power Generation

机译:新型分段Mg_3(Sb, Bi)_2/Cubic-GeTe发电热电模块实现高能量转换效率

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The performance of thermoelectric materials has been improved considerably in recent decades, making the concept of generating energy from waste heat via solid-state thermoelectric devices more realistic. The construction of multi-stage modular structures based on complex parameter optimization to maximize the efficiency of each material over its optimal operating temperature range has become an effective strategy for improving device performance. Here, multisegmented n-type Mg_3(Sb, Bi)_2 with low-contact-resistance buffer layers is first fabricated, and phase-transition-suppressed cubic p-type GeTe with enhanced thermoelectric performance is subsequently designed to match the segmented n-type legs. A 3D finite-element analysis model is then used to optimize the module size, providing higher energy conversion efficiency with an optimal average figure of merit over the entire operating temperature range. As a result, the prepared segmented-Mg_3(Sb, Bi)_2/cubic-GeTe module exhibits a high conversion efficiency of (12.8 ± 0.8) at a hot-side temperature of 773 K with a temperature difference of ≈480 K, which is also comparable to that of previously reported thermoelectric modules. This study increases the number of matching combinations among n-/p-type thermoelectric materials and further broadens the potential candidate material library for segmented thermoelectric devices.
机译:近几十年来,热电材料的性能有了很大的提高,这使得通过固态热电器件从废热中产生能量的概念更加现实。基于复杂参数优化的多级模块化结构的构建,使每种材料在其最佳工作温度范围内的效率最大化,已成为提高器件性能的有效策略。本文首先制备了具有低接触电阻缓冲层的多段n型Mg_3(Sb,Bi)_2,随后设计了具有增强热电性能的相变抑制立方p型GeTe,以匹配分段的n型支腿。然后使用三维有限元分析模型来优化模块尺寸,在整个工作温度范围内提供更高的能量转换效率和最佳的平均品质因数。结果表明,所制备的分段Mg_3(Sb, Bi)_2/cubic-GeTe组件在773 K热侧温度下表现出(12.8 ± 0.8)%的高转换效率,温差为≈480 K,与之前报道的热电组件相当。该研究增加了n型/p型热电材料之间的匹配组合数量,并进一步拓宽了分段热电器件的潜在候选材料库。

著录项

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