과제정보
This work was partially supported by the research grants from Keio University, the Keio Leading-edge Laboratory of Science and Technology (KLL).
참고문헌
- A. F. Ioffe, Semiconductor Thermoelements and Thermoelectric Cooling, p.40, Infosearch Limited, London (1957).
- Y. Goto, Ph. D. Thesis (in Japanese), p.9, Keio University, Yokohama (2015).
- H. J. Goldsmid and R. W. Douglas, Br. J. Appl. Phys., 5, 386 (1954).
- H. J. Goldsmid and R. T. Delves, GEC J., 28, 102 (1961).
- S. I. Kim, K. H. Lee, H. A. Mun, H. S. Kim, S. W. Hwang, J. W. Roh, D. J. Yang, W. H. Shin, X. S. Li, Y. H. Lee, G. J. Snyder and S. W. Kim, Science, 348, 109 (2015).
- B. Zhu, X. Liu, Q. Wang, Y. Qiu, Z. Shu, Z. Guo, Y. Tong, J. Cui, M. Gu and J. He, Energy Environ. Sci., 13, 2106 (2020).
- W. M. Yim, E. V. Fitzke and F. D. Rosi, J. Mater. Sci., 1, 52 (1966).
- K. Imasato, S. D. Kang and G. J. Snyder, Energy Environ. Sci., 12, 965 (2019).
- Z. Liu, W. Gao, H. Oshima, K. Nagase, C. H. Lee and T. Mori, Nat. Commun., 13, 1120 (2022).
- W. J. Zhu, Y. Z. Huang, C. Dong and Z. X. Zhao, Mater. Res. Bull., 29, 143 (1994).
- K. Ueda and H. Hosono, Thin Solid Films, 411, 115 (2002).
- H. Hosono and M. Hirano, Developments and Applications of Transparent Oxides as Active Electronic Materials, p.71, CMC Publishing, Tokyo, Japan (2006).
- N. Zhang, J. Sun and H. Gong, Coatings, 9, 137 (2019).
- N. Zhang, D. Shi, X. Liu, A. Annadi, B. Tang, T. J. Huang and H. Gong, Appl. Mater. Today, 13, 15 (2018).
- H. Hiramatsu, K. Ueda, H. Ohta, M. Hirano, T. Kamiya and H. Hosono, Appl. Phys. Lett., 82, 1048 (2003).
- Y. Goto, M. Tanaki, Y. Okusa, T. Shibuya, K. Yasuoka, M. Matoba and Y. Kamihara, Appl. Phys. Lett., 105, 022104 (2014).
- H. Hiramatsu, T. Kamiya, T. Tohei, E. Ikenaga, T. Mizoguchi, Y. Ikuhara, K. Kobayashi and H. Hosono, J. Am. Chem. Soc., 132, 15060 (2010).
- L. D. Zhao, D. Berardan, Y. L. Pei, C. Byl, L. Pinsard-Gaudart and N. Dragoe, Appl. Phys. Lett., 97, 092118 (2010).
- Y. Liu, L. D. Zhao, Y. Zhu, Y. Liu, F. Li, M. Yu, D. B. Liu, W. Xu, Y. H. Lin and C. W. Nan, Adv. Energy Mater., 6, 1502423 (2016).
- W. Tang, W. Qian, S. Jia, K. Li, Z. Zhou, J. Lan, Y.-H. Lin and X. Yang, Mater. Today Phys., 35, 101104 (2023).
- N. Wang, M. Li, H. Xiao, X. Zu and L. Qiao, Phys. Rev. Appl., 13, 024038 (2020).
- K. Ishikawa, S. Kinoshita, Y. Suzuki, S. Matsuura, T. Nakanishi, M. Aizawa and Y. Suzuki, J. Electrochem. Soc., 138, 1166 (1991).
- M. Yasukawa, K. Ueda and H. Hosono, J. Appl. Phys., 95, 3594 (2004).
- G. H. Jonker, Philips Res. Rep., 23, 131 (1968).
- T. Kato, Y. Kamihara, K. Kihou and C. H. Lee, Mater. Sci. Technol. Jpn., 55, 67 (2018).
- J. Li, J. Han, T. Jian, L. Luo and Y. Xiang, J. Electron. Mater., 47, 4579 (2018).
- T. Kato, Master Thesis (in Japanese), p.50, Keio University, Yokohama (2018).
- N. Azuma, T. Sawada, H. Itoh, R. Sakagami, M. Matoba, H. Usui and Y. Kamihara, Mater. Sci. Technol. Jpn., 58, 64 (2021).
- N. Azuma, Master Thesis (in Japanese), p.80, Keio University, Yokohama (2020).
- R. Sakagami, Y. Goto, H. Karimata, N. Azuma, M. Yamaguchi, S. Iwasaki, M. Nakanishi, I. Kitawaki, Y. Mizuguchi, M. Matoba and Y. Kamihara, Jpn. J. Appl. Phys., 60, 035511 (2021).
- K. Ueda and H. Hosono, J. Appl. Phys., 91, 4768 (2002).
- R. Sakagami, Ph. D. Thesis, p.32, Keio University, Yokohama (2021).
- J. R. Howell, M. P. Menguc and R. Siegel, Thermal Radiation Heat Transfer, 6th ed., p.214, CRC Press, Boca Raton (2016).
- J. B. J. Fourier, The Analytical Theory of Heat, translated by A. Freeman, p. 51-52, Cambridge University Press, Cambridge (2009).
- D. G. Cahill, S. K. Watson and R. O. Pohl, Phys. Rev. B, 46, 6131 (1992).
- K. A. Borup, J. de Boor, H. Wang, F. Drymiotis, F. Gascoin, X. Shi, L. Chen, M. I. Fedorov, E. Muller, B. B. Iversen and G. J. Snyder, Energy Environ. Sci., 8, 423 (2015).
- H. Wang, M. I. Fedorov, A. A. Shabaldin, P. P. Konstantinov and G. J. Snyder, J. Electron. Mater., 44, 1967 (2015).
- H. Wang, W. Porter, H. Bottner, J. Konig, L. Chen, S. Bai, T. Tritt, A. Mayolet, J. Senawiratne, C. Smith, F. Harris, P. Gilbert, J. Sharp, J. Lo, H. Kleinke and L. Kiss, J. Electron. Mater., 42, 1073 (2013).
- J. Francl and W. D. Kingery, J. Am. Ceram. Soc., 37, 99 (1954).
- E. S. Toberer, A. Zevalkink and G. J. Snyder, J. Mater. Chem., 21, 15843 (2011).
- R. Franz and G. Wiedemann, Ann. Phys. (Berlin, Ger.), 165, 497 (1853).
- L. Lorenz, Ann. Phys. (Berlin, Ger.), 223, 429 (1872).
- H.-S. Kim, Z. M. Gibbs, Y. Tang, H. Wang and G. J. Snyder, APL Mater., 3, 041506 (2015).
- J. B. Mandal, A. N. Das and B. Ghosh, J. Phys.: Condens. Matter, 8, 3047 (1996).
- J.-L. Lan, B. Zhan, Y.-C. Liu, B.-Z. Zheng, Y. Liu, Y.-H. Lin and C.-W. Nan, Appl. Phys. Lett., 102, 123905 (2013).
- H. Hiramatsu, I. Koizumi, K.-B. Kim, H. Yanagi, T. Kamiya, M. Hirano, N. Matsunami and H. Hosono, J. Appl. Phys., 104, 113723 (2008).
- H. Hiramatsu, K. Ueda, H. Ohta, M. Hirano, M. Kikuchi, H. Yanagi, T. Kamiya and H. Hosono, Appl. Phys. Lett., 91, 012104 (2007).
- S. Okada, I. Terasaki, H. Ooyama and M. Matoba, J. Appl. Phys., 95, 6816 (2004).
- J. M. Ziman, Electrons and Phonons, pp. 288-333, Oxford University Press, Oxford, UK (1960).
- Y.-H. Zhao, Z.-H. Shan, W. Zhou, R. Zhang, J. Pei, H.-Z. Li, J.-F. Li, Z.-H. Ge, Y.-B. Wang and B.-P. Zhang, ACS Appl. Energy Mater., 5, 5076 (2022).
- H. Tang, F.-H. Sun, J.-F. Dong, Asfandiyar, H.-L. Zhuang, Y. Pan and J.-F. Li, Nano Energy, 49, 267 (2018).
- R. Zhang, J. Pei, Z.-J. Han, Y. Wu, Z. Zhao and B.-P. Zhang, J. Adv. Ceram., 9, 535 (2020).
- K. Zhao, P. Qiu, Q. Song, A. B. Blichfeld, E. Eikeland, D. Ren, B. Ge, B. B. Iversen, X. Shi and L. Chen, Mater. Today Phys., 1, 14 (2017).
- Y. Wang, W.-D. Liu, H. Gao, L.-J. Wang, M. Li, X.-L. Shi, M. Hong, H. Wang, J. Zou and Z.-G. Chen, ACS Appl. Mater. Interfaces, 11, 31237 (2019).
- H. Zhao, P. Zhao, B. Wang, D. Wang, A. Song, C. Chen, T. Shen, F. Yu, D. Yu, B. Xu and Y. Tian, Mater. Today Phys., 43, 101410 (2024).
- X. Yan, B. Poudel, Y. Ma, W. S. Liu, G. Joshi, H. Wang, Y. Lan, D. Wang, G. Chen and Z. F. Ren, Nano Lett., 10, 3373 (2010).