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通过独特的平面内角向晶界实现有序结构SbTe薄膜的高性能。

Approaching high-performance of ordered structure SbTe film via unique angular intraplanar grain boundaries.

作者信息

Tan Ming, Hao Liyu, Li Hui, Li Cong, Liu Xiaobiao, Yan Dali, Yang Tie, Deng Yuan

机构信息

College of Science, Henan Agricultural University, Zhengzhou, 450002, China.

Beijing Key Laboratory of Special Functional Materials and Films, School of Materials Science and Engineering, Beihang University, Beijing, 100191, China.

出版信息

Sci Rep. 2020 Apr 6;10(1):5978. doi: 10.1038/s41598-020-63062-z.

Abstract

In this paper, we present an innovative electric-field-assisted magnetron-sputtering deposition method for films preparation. By grain boundary-engineering, we successeful obtained the ordered SbTe film with greatly high figure of merit via controlling external electric field. It has been found that the electric field can induce the change in the angle of intraplanar grain boundaries between (0 1 5) and (0 1 5) planes, which leads to the enhanced holes mobility and maintained low thermal conductivity. The energy filtering takes place at the angular intraplanar grain boundaries. At room temperature, a high ZT value of 1.75 can be achieved in the deposited SbTe film under 30 V external electric field. This is a very promising approach that the electric field induced deposition can develop high-performance SbTe-based thermoelectric films.

摘要

在本文中,我们提出了一种用于薄膜制备的创新型电场辅助磁控溅射沉积方法。通过晶界工程,我们成功地通过控制外部电场获得了具有极高优值的有序SbTe薄膜。研究发现,电场可诱导(0 1 5)和(0 1 5)平面之间的面内晶界角度发生变化,这导致空穴迁移率提高且热导率保持较低。能量过滤发生在面内角晶界处。在室温下,在30 V外部电场下沉积的SbTe薄膜中可实现1.75的高ZT值。电场诱导沉积是一种非常有前景的方法,可用于开发高性能的SbTe基热电薄膜。

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