Majority charge carrier reversal and its effect on thermal and electron transport in xV2O5-(1-x) As2O3 glasses

被引:6
作者
Annamalai, Sezhian [1 ]
Bhatta, Rudra P. [1 ]
Pegg, Ian L. [1 ]
Dutta, Biprodas [1 ]
机构
[1] Catholic Univ Amer, Vitreous State Lab, Washington, DC 20064 USA
关键词
Vanadate glasses; Polaronic-bipolaronic conductors; Thermopower; Majority charge carrier reversal; SEMICONDUCTING OXIDE GLASSES; MEYER-NELDEL RULE; CHALCOGENIDE GLASSES; V2O5-SNO-TEO2; GLASSES; VANADATE GLASSES; HOPPING CONDUCTIVITY; DISORDERED-SYSTEMS; PHOSPHATE-GLASSES; AC CONDUCTION; SMALL-POLARON;
D O I
10.1016/j.jnoncrysol.2012.01.042
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
DC resistivity. thermopower and optical absorption of xV(2)O(5)-(1-x) As2O3 (0.58 <= x <= 0.93) glasses have been studied as a function of composition. The transport mechanism in these glasses has been identified to be a combination of hopping of small polarons between V4+ and V5+ sites and small bipolarons between As3+ and As5+ sites respectively. Electrical conductivity is found to be more of a function of vanadium content than arsenic concentration in the glasses, indicating that the contribution of bipolarons to the conductivity is negligible. Thermopower has also been found to be sensitive to the composition of the glasses. At low vanadium concentrations, the thermopower is negative, which exhibits a sign reversal as vanadium concentration is increased (at x = 0.7). An important feature of these glasses is that the thermopower is not a function of[V5+]/[V4+] ratio, as is normally observed in vanadate glasses, and such a phenomenon suggests that the arsenic ions (bipolarons) in these glasses contribute to the thermal transport phenomena in a significant way. (C) 2012 Elsevier B.V. All rights reserved.
引用
收藏
页码:1019 / 1027
页数:9
相关论文
共 59 条
[1]   Unified hopping model for dc and ac conduction in chalcogenide glasses [J].
Abdel-Wahab, F .
PHILOSOPHICAL MAGAZINE B-PHYSICS OF CONDENSED MATTER STATISTICAL MECHANICS ELECTRONIC OPTICAL AND MAGNETIC PROPERTIES, 2002, 82 (12) :1327-1333
[2]  
Alexandrov A. S., 1995, POLARONS BIPOLARONS
[3]   SEEBECK COEFFICIENT OF SEMICONDUCTING OXIDE GLASSES [J].
ALLERSMA, T ;
MACKENZIE, JD .
JOURNAL OF CHEMICAL PHYSICS, 1967, 47 (04) :1406-+
[4]   ABSENCE OF DIFFUSION IN CERTAIN RANDOM LATTICES [J].
ANDERSON, PW .
PHYSICAL REVIEW, 1958, 109 (05) :1492-1505
[5]   Effect of cation stoichiometry on the transport properties of calcium ruthenium oxide ceramics [J].
Annamalai, Sezhian ;
Vidensky, Igor ;
Pegg, Ian L. ;
Dutta, Biprodas .
JOURNAL OF MATERIALS SCIENCE, 2008, 43 (14) :4996-5004
[6]   POLARONS IN CRYSTALLINE AND NON-CRYSTALLINE MATERIALS [J].
AUSTIN, IG ;
MOTT, NF .
ADVANCES IN PHYSICS, 1969, 18 (71) :41-+
[7]   The Electronic Structure of the Vanadyl Ion [J].
Ballhausen, C. J. ;
Gray, Harry B. .
INORGANIC CHEMISTRY, 1962, 1 (01) :111-122
[8]   OPTICAL AND ELECTRON-SPIN-RESONANCE INVESTIGATION OF BORATE GLASSES CONTAINING SINGLE AND MIXED TRANSITION-METAL OXIDES [J].
BANDYOPADHYAY, AK .
JOURNAL OF MATERIALS SCIENCE, 1981, 16 (01) :189-203
[9]   MECHANISM OF ELECTRICAL CONDUCTION IN LI-DOPED NIO [J].
BOSMAN, AJ ;
CREVECOEUR, C .
PHYSICAL REVIEW, 1966, 144 (02) :763-+
[10]  
BUTCHER PN, 1981, J PHYS C SOLID STATE, V14, P1099