Journal of Inorganic Materials, Volume. 38, Issue 8, 931(2023)
[5] ZHANG Q H, LIAO J C, TANG Y S et al. Realizing a thermoelectric conversion efficiency of 12% in bismuth telluride/skutterudite segmented modules through full-parameter optimization and energy-loss minimized integration[J]. Energy & Environmental Science, 956(2017).
[6] LIU W S, BAI S Q. Thermoelectric interface materials: a perspective to the challenge of thermoelectric power generation module[J]. Journal of Materiomics, 3216(2019).
[13] FU Y T, ZHANG Q H, HU Z L et al. Mg3(Bi,Sb)2-based thermoelectric modules for efficient and reliable waste-heat utilization up to 750 K[J]. Energy & Environmental Science, 3265(2022).
[14] WANG Y C, CHEN J, JIANG Y et al. Suppression of interfacial diffusion in Mg3Sb2 thermoelectric materials through an Mg4.3Sb3Ni/Mg3.2Sb2Y0.05/Mg4.3Sb3Ni-graded structure[J]. ACS Applied Materials & Interfaces, 33419(2022).
[16] LIANG Z, XU C, SHANG H et al. High thermoelectric energy conversion efficiency of a unicouple of n-type Mg3Bi2 and p-type Bi2Te3[J]. Materials Today Physics(2021).
[17] BU Z, ZHANG X, HU Y et al. An over 10% module efficiency obtained using non-Bi2Te3 thermoelectric materials for recovering heat of <600 K[J]. Energy & Environmental Science, 6506(2021).
[20] CHU J, GU M, LIU R H et al. Interfacial behaviors of p-type Ce
[21] SHAO X, LIU R H, WANG L et al. Interfacial stress analysis on skutterudite-based thermoelectric joints under service conditions[J]. Journal of Inorganic Materials, 30(2020).
[24] KUO J J, KANG S D, IMASATO K et al. Grain boundary dominated charge transport in Mg3Sb2-based compounds[J]. Energy & Environmental Science, 429(2018).
[25] WOOD M, KUO J J, IMASATO K et al. Improvement of low-temperature ZT in a Mg3Sb2-Mg3Bi2 solid solution
Get Citation
Copy Citation Text
Zhongliang HU, Yuntian FU, Meng JIANG, Lianjun WANG, Wan JIANG.
Category:
Received: Jan. 4, 2023
Accepted: --
Published Online: Dec. 28, 2023
The Author Email: Wan JIANG (wanjiang@dhu.edu.cn)