Department of Physics, Boston College, Chestnut Hill, Massachusetts 02467, USA.
Nano Lett. 2011 Feb 9;11(2):556-60. doi: 10.1021/nl104138t. Epub 2010 Dec 22.
Half-Heuslers would be important thermoelectric materials due to their high temperature stability and abundance if their dimensionless thermoelectric figure of merit (ZT) could be made high enough. The highest peak ZT of a p-type half-Heusler has been so far reported about 0.5 due to the high thermal conductivity. Through a nanocomposite approach using ball milling and hot pressing, we have achieved a peak ZT of 0.8 at 700 °C, which is about 60% higher than the best reported 0.5 and might be good enough for consideration for waste heat recovery in car exhaust systems. The improvement comes from a simultaneous increase in Seebeck coefficient and a significant decrease in thermal conductivity due to nanostructures. The samples were made by first forming alloyed ingots using arc melting and then creating nanopowders by ball milling the ingots and finally obtaining dense bulk by hot pressing. Further improvement in ZT is expected when average grain sizes are made smaller than 100 nm.
如果能使无量纲热电优值(ZT)足够高,半赫斯勒合金将成为重要的热电材料,因为它们具有高温稳定性和丰富的储量。由于较高的热导率,迄今为止报道的 p 型半赫斯勒合金的最高 ZT 峰值约为 0.5。通过使用球磨和热压的纳米复合材料方法,我们在 700°C 时实现了 0.8 的 ZT 峰值,比报道的最佳值 0.5 提高了约 60%,这可能足以考虑用于汽车尾气系统中的余热回收。这种改进来自塞贝克系数的同时提高和由于纳米结构导致的热导率的显著降低。首先通过电弧熔炼形成合金锭,然后通过球磨将锭制成纳米粉末,最后通过热压获得致密的块状物来制备样品。当平均晶粒尺寸小于 100nm 时,ZT 有望进一步提高。