Han Guang, Zhang Ruizhi, Popuri Srinivas R, Greer Heather F, Reece Michael J, Bos Jan-Willem G, Zhou Wuzong, Knox Andrew R, Gregory Duncan H
WestCHEM, School of Chemistry, University of Glasgow, Glasgow G12 8QQ, UK.
School of Engineering & Materials Science, Queen Mary University of London, London E1 4NS, UK.
Materials (Basel). 2017 Feb 26;10(3):233. doi: 10.3390/ma10030233.
A facile one-pot aqueous solution method has been developed for the fast and straightforward synthesis of SnTe nanoparticles in more than ten gram quantities per batch. The synthesis involves boiling an alkaline Na₂SnO₂ solution and a NaHTe solution for short time scales, in which the NaOH concentration and reaction duration play vital roles in controlling the phase purity and particle size, respectively. Spark plasma sintering of the SnTe nanoparticles produces nanostructured compacts that have a comparable thermoelectric performance to bulk counterparts synthesised by more time- and energy-intensive methods. This approach, combining an energy-efficient, surfactant-free solution synthesis with spark plasma sintering, provides a simple, rapid, and inexpensive route to p-type SnTe nanostructured materials.
已开发出一种简便的一锅水溶液法,用于快速直接地合成每批超过十克的碲化锡纳米颗粒。该合成过程包括在短时间内煮沸碱性Na₂SnO₂溶液和NaHTe溶液,其中NaOH浓度和反应持续时间分别在控制相纯度和粒径方面起着至关重要的作用。对碲化锡纳米颗粒进行放电等离子烧结可制备出纳米结构的压块,其热电性能与通过更耗时且耗能的方法合成的块状材料相当。这种方法将节能、无表面活性剂的溶液合成与放电等离子烧结相结合,为制备p型碲化锡纳米结构材料提供了一条简单、快速且廉价的途径。