1 |
Composition- and crystallinity-dependent thermoelectric properties of ternary BixSb2-xTey films Kim J, Lim JH, Myung NV Applied Surface Science, 429, 158, 2018 |
2 |
Electrodeposition of Bi2Te3-based p and n-type ternary thermoelectric compounds in chloride baths Kang WS, Chou WC, Li WJ, Shen TH, Lin CS Thin Solid Films, 660, 108, 2018 |
3 |
Enhancement of power factor by energy filtering effect in hierarchical BiSbTe3 nanostructures for thermoelectric applications Sabarinathan M, Omprakash M, Harish S, Navaneethan M, Archana J, Ponnusamy S, Ikeda H, Takeuchi T, Muthamizhchelvan C, Hayakawa Y Applied Surface Science, 418, 246, 2017 |
4 |
Thermoelectric properties of Bi0.5Sb1.5Te3 thin films grown by pulsed laser deposition Symeou E, Pervolaraki M, Mihailescu CN, Athanasopoulos GI, Papageorgiou C, Kyratsi T, Giapintzakis J Applied Surface Science, 336, 138, 2015 |
5 |
Preferential growth transformation of Bi0.5Sb1.5Te3 films induced by facile post-annealing process: Enhanced thermoelectric performance with layered structure Zhu W, Deng Y, Wang Y, Luo BW, Cao LL Thin Solid Films, 556, 270, 2014 |
6 |
방전플라즈마 소결법으로 제조된 Bismuth Antimony Telluride의 소결온도에 따른 열전특성 이경석, 서성호, 진상현, 유봉영, 정영근 Korean Journal of Materials Research, 22(6), 280, 2012 |
7 |
Effects of composition and preferred orientation on microstructure and thermoelectric properties of p-type (BixSb(1-x))(2)Te-3 alloys Euvananont C, Jantaping N, Thanachayanont C Current Applied Physics, 11(1), S246, 2011 |
8 |
Diffusion at interfaces of micro thermoelectric devices Bae NH, Han S, Lee KE, Kim B, Kim ST Current Applied Physics, 11(5), S40, 2011 |
9 |
Improved thermoelectric performance of highly-oriented nanocrystalline bismuth antimony telluride thin films Takashiri M, Tanaka S, Miyazaki K Thin Solid Films, 519(2), 619, 2010 |
10 |
Thermoelectric properties of the bismuth-antimony-telluride and the antimony-telluride films processed by electrodeposition for micro-device applications Lim SK, Kim MY, Oh TS Thin Solid Films, 517(14), 4199, 2009 |