Ink Casting and 3D-Extrusion Printing of Yb14MnSb11 for High-Temperature Thermoelectric Material

IF 18.5 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Ming Chen, Alex Pröschel, Kurt E. Star, Sabah K. Bux, G. Jeffrey Snyder, David C. Dunand
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Abstract

Complex shapes are created from Yb14MnSb11, a high-temperature thermoelectric Zintl phase, via a two-step process: i) layer-by-layer 3D-extrusion of ink containing partially-reacted powders which are ball-milled from a blend of Yb, MnSb, and Sb powders; ii) heat treatment to synthesize the ternary compound Yb14MnSb11 and densify the extruded powders. A high phase purity for Yb14MnSb11 (83–94%) is achieved in both cast and 3D-extruded ink specimens via a solid-state reaction between Yb, MnSb, and Yb4Sb3 during reactive sintering. Pressure-free sintering at temperatures of 1200–1400 °C densifies the powders to 82% relative density but can also induce the decomposition of the Yb14MnSb11 phase due to Yb sublimation. A process window with optimized sintering temperature and time is identified, achieving both low porosity and high phase purity and reaching a maximum zT = 0.61 at 1000 °C, about half of the maximum zT value for bulk Yb14MnSb11 made via conventional processes (pressure sintering of precursor powders). The present approach – direct ink writing of ball-milled powders, combined with reactive sintering – is a scalable and affordable method to fabricate thermoelectric legs with intricate 3D shapes, for enhanced performances in high-temperature thermoelectric applications.

Abstract Image

Abstract Image

高温热电材料Yb14MnSb11油墨铸造及3d挤出打印
Yb14MnSb11是一种高温热电Zintl相,通过两步工艺可以产生复杂的形状:i)一层一层的3d挤出含有部分反应粉末的油墨,这些粉末由Yb, MnSb和Sb粉末的混合物球磨而成;ii)热处理合成三元化合物Yb14MnSb11,并使挤出的粉末致密化。在反应烧结过程中,通过Yb、MnSb和Yb4Sb3之间的固态反应,Yb14MnSb11的高相纯度(83-94%)在铸造和3d挤压墨水样品中都得到了实现。在1200-1400℃的无压烧结温度下,粉末的相对密度达到82%,但也会导致Yb14MnSb11相因Yb升华而分解。确定了最佳烧结温度和时间的工艺窗口,实现了低孔隙率和高相纯度,并在1000℃时达到最大zT = 0.61,约为传统工艺(前驱体粉末压力烧结)制备的Yb14MnSb11的最大zT值的一半。目前的方法-球磨粉末的直接墨水书写,结合反应烧结-是一种可扩展且经济实惠的方法,可以制造具有复杂3D形状的热电腿,以增强高温热电应用的性能。
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来源期刊
Advanced Functional Materials
Advanced Functional Materials 工程技术-材料科学:综合
CiteScore
29.50
自引率
4.20%
发文量
2086
审稿时长
2.1 months
期刊介绍: Firmly established as a top-tier materials science journal, Advanced Functional Materials reports breakthrough research in all aspects of materials science, including nanotechnology, chemistry, physics, and biology every week. Advanced Functional Materials is known for its rapid and fair peer review, quality content, and high impact, making it the first choice of the international materials science community.
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