Thermal conductivity of opal filled with a LiIO3 ionic conductor

被引:7
作者
Aliev, AÉ [1 ]
Akhmedzhanova, NK
Krivorotov, VF
Kholmanov, IN
Fridman, AA
机构
[1] LG Elect Corp, Inst Technol LG Elite, Seoul 137724, South Korea
[2] Uzbek Acad Sci, Dept Thermal Phys, Tashkent 700135, Uzbekistan
关键词
D O I
10.1134/1.1537411
中图分类号
O469 [凝聚态物理学];
学科分类号
070205 ;
摘要
The temperature dependences of the thermal conductivity of a synthetic opal and opal-based nanocomposites prepared by introducing a LiIO3 superionic conductor into pores of the opal matrix from an aqueous solution or melt are measured by the hot-wire technique in the temperature range 290-420 K. It is demonstrated that the thermal conductivity of pure opal increases with an increase in the diameter of the SiO2 spheres forming a face-centered cubic lattice of an opal and is determined by the total thermal resistance of interfaces between the spheres. Filling of opal pores with the ionic conductor leads to an increase in the thermal conductivity. The behavior of the thermal conductivity and its magnitude in opal-based nanocomposites depend to a large extent on the method of filling the matrix pores. (C) 2003 MAIK "Nauka/Interperiodica".
引用
收藏
页码:61 / 68
页数:8
相关论文
共 29 条
[1]   THERMAL-PROPERTIES OF LI CONDUCTING SUPERIONIC MATERIALS [J].
ABDULCHALIKOVA, NR ;
ALIEV, AE .
SYNTHETIC METALS, 1995, 71 (1-3) :1929-1932
[2]   Thermally activated two-level systems in superionic conductors [J].
Abdulchalikova, NR ;
Aliev, AE ;
Krivorotov, VF ;
Khabibullaev, PK .
SOLID STATE IONICS, 1998, 107 (1-2) :59-65
[3]  
ABDULKHAILKOVA NR, 1991, UZB FIZ ZH, P50
[4]  
Abramovich A. A., 1987, Soviet Physics - Solid State, V29, P1426
[5]  
Aliev A. E., 1989, Soviet Physics - Solid State, V31, P2127
[6]   MECHANISM OF A SUPERION PHASE-TRANSITION IN ALPHA-LIIO3 [J].
ALIEV, AE ;
AKRAMOV, AS ;
FERSHTAT, LN ;
KHABIBULLAEV, PK .
PHYSICA STATUS SOLIDI A-APPLIED RESEARCH, 1988, 108 (01) :189-196
[7]  
ALIEV AE, 1987, IZV AKAD NAUK UZ SSR, P76
[8]  
ALIEV AE, 1999, UZB FIZ ZH, P373
[9]   Unusual behavior of thermal conductivity of a crystalline-NaCl-opal nanocomposite [J].
Arutyunyan, LI ;
Bogomolov, VN ;
Kartenko, NF ;
Kurdyukov, DA ;
Parfen'eva, LS ;
Smirnov, IA ;
Sharenkova, NV ;
Jezowski, A ;
Mucha, J ;
Misiorek, H .
PHYSICS OF THE SOLID STATE, 1998, 40 (02) :348-349
[10]  
Avdienko K.I., 1980, LITHIUM IODATE GROWT