Charge Transport in Thermoelectric SnSe Single Crystals AITranslate
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SnSe has attracted increasing attention as a promising thermoelectric material. In this work, a horizontal vapor transfer method was developed to synthesize high-quality, fully dense, and stoichiometric SnSe single crystals, which enables an evaluation of the transport properties inherent to SnSe along the bc-plane. The electronic transport properties can be well-understood by a single parabolic band model with acoustic phonon scattering, enabling insights into the fundamental material parameters determining the electronic properties. The lattice thermal conductivity (κl) decreases from 2.0 W m–1 K–1 at 300 K to 0.55 W m–1 K–1 at 773 K. It is revealed that an increase in hole concentration, an involvement of low-lying bands for transport, and a further reduction in κl would all enable p-type SnSe to be a promising eco-friendly thermoelectric material. This work not only provides a fundamental understanding of the charge transport but also guides the further improvement of thermoelectric SnSe.
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DOI:https://doi.org/10.1021/acsenergylett.7b01259
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SnSe has attracted increasing attention as a promising thermoelectric material. In this work, a horizontal vapor transfer method was developed to synthesize high-quality, fully dense, and stoichiometric SnSe single crystals, which enables an evaluation of the transport properties inherent to SnSe along the bc-plane. The electronic transport properties can be well-understood by a single parabolic band model with acoustic phonon scattering, enabling insights into the fundamental material parameters determining the electronic properties. The lattice thermal conductivity (κl) decreases from 2.0 W m–1 K–1 at 300 K to 0.55 W m–1 K–1 at 773 K. It is revealed that an increase in hole concentration, an involvement of low-lying bands for transport, and a further reduction in κl would all enable p-type SnSe to be a promising eco-friendly thermoelectric material. This work not only provides a fundamental understanding of the charge transport but also guides the further improvement of thermoelectric SnSe.
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| GB/T 7714-2015 | [1] Min Jin, Zhiwei Chen, Xiaojian Tan, et al. ACS Energy Letters, 2018(3). DOI:10.1021/acsenergylett.7b01259. |
| MLA | [1] Min Jin, et al., ACS Energy Letters, no. 3, 2018, https://doi.org/10.1021/acsenergylett.7b01259. |
| APA | [1] Min Jin, Zhiwei Chen, Xiaojian Tan, Hezhu Shao, Guoqiang Liu, Haoyang Hu, Jingtao Xu, Bo Yu, Hui Shen, Jiayue Xu, Haochuan Jiang, Yanzhong Pei, & Jun Jiang. (2018). ACS Energy Letters(3). https://doi.org/10.1021/acsenergylett.7b01259 |
| IEEE | [1] Min Jin, Zhiwei Chen, Xiaojian Tan, Hezhu Shao, Guoqiang Liu, Haoyang Hu, Jingtao Xu, Bo Yu, Hui Shen, Jiayue Xu, Haochuan Jiang, Yanzhong Pei, and Jun Jiang, ACS Energy Letters, no. 3, 2018, doi: 10.1021/acsenergylett.7b01259. |
