Optimization of photo-thermoelectric performance in SnSe crystals via doping engineering

Author:

Chen Li-Da12,Jiang Hong-Tao23ORCID,Yin Cheng-Hao23,Zhang En-Rui4,Hou Yue-Ying12,Zhou Xiao-Li12,Wang Fan23,Lv Yang-Yang23ORCID,Yan Xue-Jun12,Zhou Jian12ORCID,Yao Shu-Hua125ORCID,Chen Y. B.23,Lu Ming-Hui12ORCID,Chen Yan-Feng126ORCID

Affiliation:

1. Jiangsu Key Laboratory of Artificial Functional Materials & Department of Materials Science and Engineering, Nanjing University 1 , Nanjing 210093, China

2. National Laboratory of Solid State Microstructures, Nanjing University 2 , Nanjing 210093, China

3. Department of Physics, Nanjing University 3 , Nanjing 210093, China

4. Department of Physics, National University of Defense Technology 4 , Changsha, Hunan 410073, China

5. Hubei Key Laboratory of Plasma Chemistry and Advanced Materials, Wuhan Institute of Technology 5 , Wuhan 430205, China

6. Collaborative Innovation Center of Advanced Microstructures, Nanjing University 6 , Nanjing 210093, China

Abstract

Thermoelectric materials, based on photo-thermoelectric effect (PTE), may be promising in photo-detection because of their self-power, extremely broad-band, and free of cryogenic attachments. Up to now, the performance of PTE is mainly optimized through enhancement of extrinsic absorption such as using optical metamaterials. Instead, we here improve the PTE through materials engineering, accordingly systematically investigated the PTE of both P- and N-type SnSe crystals with different carrier concentrations (1017–1019 cm−3). P-type SnSe has much better photo-thermoelectric performance than the N-type one. Among P-type SnSe, the SnSe crystal with the largest carrier concentration (∼1019 cm−3 at room temperature) demonstrates the highest photo-thermoelectric performance. Analysis by a modified two-temperature model suggests that the key parameter of enhanced PTE is the high electrical conductivity, which leads to large optical absorption and large temperature difference. Our work provides a guideline on how to engineer thermoelectric materials to enhance their photo-thermoelectric performance.

Funder

Foundation for Innovative Research Groups of the National Natural Science Foundation of China

National Natural Science Foundation of China

Publisher

AIP Publishing

Subject

Physics and Astronomy (miscellaneous)

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