Page 110 - Read Online
P. 110
Kumar et al. Energy Mater. 2025, 5, 500109 https://dx.doi.org/10.20517/energymater.2025.22 Page 17 of 17
42. Zhu, T.; Gao, H.; Chen, Y.; Zhao, X. Ioffe-regel limit and lattice thermal conductivity reduction of high performance (AgSbTe )
2 15
(GeTe) thermoelectric materials. J. Mater. Chem. A. 2014, 2, 3251-6. DOI
85
43. Kim, H.; Kim, S. I.; Lee, K. H.; Kim, S. W.; Snyder, G. J. Phonon scattering by dislocations at grain boundaries in polycrystalline Bi 0.5
Sb Te . Physica. Status. Solidi. (b). 2017, 254, 1600103. DOI
1.5 3
44. Bahk, J.; Shakouri, A. Minority carrier blocking to enhance the thermoelectric figure of merit in narrow-band-gap semiconductors.
Phys. Rev. B. 2016, 93, 165209. DOI
45. Wei, Z.; Yang, Y.; Wang, C.; Li, Z.; Zheng, L.; Luo, J. Enhanced room-temperature thermoelectric performance of p-type BiSbTe by
reducing carrier concentration. RSC. Adv. 2019, 9, 2252-7. DOI PubMed PMC
46. Cao, S.; Huang, Z. Y.; Zu, F. Q.; Xu, J.; Yang, L.; Chen, Z. G. Enhanced thermoelectric properties of Ag-modified Bi Sb Te 3
1.5
0.5
composites by a facile electroless plating method. ACS. Appl. Mater. Interfaces. 2017, 9, 36478-82. DOI
47. Dharmaiah, P.; Lee, K.; Song, S. H.; Kim, H. S.; Hong, S. Enhanced thermoelectric performance of Bi Sb Te composites through
3
0.5
1.5
potential barrier scattering at heterogeneous interfaces. Mater. Res. Bull. 2021, 133, 111023. DOI
48. Wu, G.; Yan, Z.; Wang, X.; et al. Optimized thermoelectric properties of Bi Sb Te through AgCuTe doping for low-grade heat
0.48 1.52 3
harvesting. ACS. Appl. Mater. Interfaces. 2021, 13, 57514-20. DOI
49. Li, Y.; Ren, M.; Sun, Z.; Yao, Z. Nanoarchitectonics of p-type BiSbTe with improved figure of merit via introducing PbTe
nanoparticles. RSC. Adv. 2021, 11, 36636-43. DOI
50. Maksymuk, M.; Dzundza, B.; Matkivsky, O.; Horichok, I.; Shneck, R.; Dashevsky, Z. Development of the high performance
thermoelectric unicouple based on Bi Te compounds. J. Power. Sources. 2022, 530, 231301. DOI
2 3
51. Deng, R.; Su, X.; Hao, S.; et al. High thermoelectric performance in Bi 0.46 Sb 1.54 Te nanostructured with ZnTe. Energy. Environ. Sci.
3
2018, 11, 1520-35. DOI

