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The thermoelectric power of charge-density-wave conductors Rb0.3MoO3 and Rb0.15K0.15MoO3
J. F. Wang; F. Yi; M. Z. Ke; D. Yin; R. Xiong; Z. Y. Liu; J. Shi; D. C. Tian; H. Wu; Y. H. Zhang
2004
发表期刊Solid State Communications
ISSN0038-1098
卷号132期号:10页码:653-656
摘要The thermoelectric power (TEP) of the quasi-one-dimensional charge-density-wave (CDW) conductors rubidium blue bronze Rb0.3MoO3 and its alloy Rb0.15K0.15MoO3 were measured in the temperature range 80-280 K. The result showed a sign change from a small positive value to a great negative value where the Peierls transition temperatures (T-p) are 183 and 180 K for Rb0.3MoO3 and Rb0.15K0.15MoO3, respectively. Above T-p, the TEP for both samples can be described with the empirical relation S=AT+B; while below T-p, the TEP fits well the relation S=AT+B/T based on the experimental data. The Fermi energies epsilon(F) for Rb0.3MoO3 and Rb0.15K0.15MoO3 are estimated to be 1.55 and 0.53 eV, respectively. (C) 2004 Elsevier Ltd. All rights reserved.
部门归属wuhan univ, dept phys, wuhan 430072, peoples r china. acad sinica, int ctr mat phys, shenyang 110015, peoples r china. univ sci & technol china, struct res lab, anhua 230026, peoples r china.;shi, j (reprint author), wuhan univ, dept phys, wuhan 430072, peoples r china, peoples r china;jason_iris@163.com jshi@whu.edu.cn
关键词Blue Bronze Charge-density-wave Thermoelectric Power Blue Bronze K0.3moo3 Thermopower Scattering Transport Phase
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WOS记录号WOS:000225166600001
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被引频次:2[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://ir.imr.ac.cn/handle/321006/35581
专题中国科学院金属研究所
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J. F. Wang,F. Yi,M. Z. Ke,et al. The thermoelectric power of charge-density-wave conductors Rb0.3MoO3 and Rb0.15K0.15MoO3[J]. Solid State Communications,2004,132(10):653-656.
APA J. F. Wang.,F. Yi.,M. Z. Ke.,D. Yin.,R. Xiong.,...&Y. H. Zhang.(2004).The thermoelectric power of charge-density-wave conductors Rb0.3MoO3 and Rb0.15K0.15MoO3.Solid State Communications,132(10),653-656.
MLA J. F. Wang,et al."The thermoelectric power of charge-density-wave conductors Rb0.3MoO3 and Rb0.15K0.15MoO3".Solid State Communications 132.10(2004):653-656.
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