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Electronic structure and transport properties of K-doped blue bronze Rb0.15K0.15MoO3
J. F. Wang; N. Shu; M. Z. Ke; Z. Tang; J. Shi
2007
Source PublicationMaterials Letters
ISSN0167-577X
Volume61Issue:28Pages:5067-5069
AbstractSingle crystals of K-doped blue bronze Rb0.15K0.15MoO3 and Rb0.3MoO3 have been investigated by measurements of the X-ray photoemission spectrum (XPS), electrical resistivity and thermoelectric power, respectively. Analysis of the XPS data reveals that two final states representing alternate screening channels coexist in Rb0.15K0.15MoO3. Compared with the pure bronze, the Mo sites of the doped sample contain less 4d electrons which reflected in the movement of Mo3d spectrum. Due to the discrepancy of electronic structure, the K ion doping results in the notable increase of the single particle activation energy and decrease of the thermoelectric power in the charge density wave state. (C) 2007 Elsevier B.V. All rights reserved.
description.departmentwuhan univ, sch remote sensing & informat engn, wuhan 430072, peoples r china. wuhan univ, dept phys, wuhan 430072, peoples r china. int ctr mat phys, shenyang 110015, peoples r china.;wang, jf (reprint author), wuhan univ, sch remote sensing & informat engn, wuhan 430072, peoples r china;jason_iris@163.com
KeywordBlue Bronze Charge-density-wave Electronic Structure Nonlinear Transport K0.30moo3 Tl0.3moo3 K0.3moo3 Moo3
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WOS IDWOS:000250738700025
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Cited Times:1[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Identifierhttp://ir.imr.ac.cn/handle/321006/33862
Collection中国科学院金属研究所
Recommended Citation
GB/T 7714
J. F. Wang,N. Shu,M. Z. Ke,et al. Electronic structure and transport properties of K-doped blue bronze Rb0.15K0.15MoO3[J]. Materials Letters,2007,61(28):5067-5069.
APA J. F. Wang,N. Shu,M. Z. Ke,Z. Tang,&J. Shi.(2007).Electronic structure and transport properties of K-doped blue bronze Rb0.15K0.15MoO3.Materials Letters,61(28),5067-5069.
MLA J. F. Wang,et al."Electronic structure and transport properties of K-doped blue bronze Rb0.15K0.15MoO3".Materials Letters 61.28(2007):5067-5069.
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