تخطي إلى التنقل الرئيسي تخطي إلى البحث تخطي إلى المحتوى الرئيسي

Grain-by-Grain Compositional Variations and Interstitial Metals -: A New Route toward Achieving High Performance in Half-Heusler Thermoelectrics

  • Sonia A. Barczak
  • , John E. Halpin
  • , Jim Buckman
  • , Rodolphe Decourt
  • , Michael Pollet
  • , Ronald I. Smith
  • , Donald A. Maclaren
  • , Jan Willem G. Bos

نتاج البحث: Articleمراجعة النظراء

45 اقتباسات (Scopus)
63 التنزيلات (Pure)

ملخص

Half-Heusler alloys based on TiNiSn are promising thermoelectric materials characterized by large power factors and good mechanical and thermal stabilities, but they are limited by large thermal conductivities. A variety of strategies have been used to disrupt their thermal transport, including alloying with heavy, generally expensive, elements and nanostructuring, enabling figures of merit, ZT ≥ 1 at elevated temperatures (>773 K). Here, we demonstrate an alternative strategy that is based around the partial segregation of excess Cu leading to grain-by-grain compositional variations, the formation of extruded Cu "wetting layers" between grains, and - most importantly - the presence of statistically distributed interstitials that reduce the thermal conductivity effectively through point-defect scattering. Our best TiNiCuySn (y ≤ 0.1) compositions have a temperature-averaged ZTdevice = 0.3-0.4 and estimated leg power outputs of 6-7 W cm-2 in the 323-773 K temperature range. This is a significant development as these materials were prepared using a straightforward processing method, do not contain any toxic, expensive, or scarce elements, and are therefore promising candidates for large-scale production.

اللغة الأصليةEnglish
الصفحات (من إلى)4786-4793
عدد الصفحات8
دوريةACS Applied Materials and Interfaces
مستوى الصوت10
رقم الإصدار5
تاريخ مبكر على الإنترنت25 يناير 2018
المعرِّفات الرقمية للأشياء
حالة النشرPublished - 7 فبراير 2018

بصمة

أدرس بدقة موضوعات البحث “Grain-by-Grain Compositional Variations and Interstitial Metals -: A New Route toward Achieving High Performance in Half-Heusler Thermoelectrics'. فهما يشكلان معًا بصمة فريدة.

قم بذكر هذا