High-temperature heat capacity and thermal expansion of SrTiO3 and SrZrO3 perovskites

被引:301
作者
deLigny, D
Richet, P
机构
[1] Laboratoire des Géomatériaux, URA CNRS 734, Institut de Physique du Globe de Paris, 75252 Paris Cédex 05, 4, place Jussieu
来源
PHYSICAL REVIEW B | 1996年 / 53卷 / 06期
关键词
D O I
10.1103/PhysRevB.53.3013
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The heat capacity and thermal expansion of SrZrO3 and SrTiO3 have been determined by drop calorimetry and energy-dispersive x-ray diffraction from 300 up to 1800 K or more. For both compounds, thermal history has a slight influence on relative enthalpies in the range 900-1400 K but a satisfactory precision was obtained through systematic quenches from 1820 K before the calorimetric measurements. Strontium titanate is cubic at room temperature. Up to 1800 K, its heat capacity increases smoothly and its thermal-expansion coefficient remains almost independent of temperature with a value of 3.23(2) 10(-5) K-1. At room temperature, strontium zirconate is orthorhombic (space group Pbnm). The phase transitions from orthorhombic Pbnm to orthorhombic Cmcm at 995 K and then to tetragonal I4/mcm at 1105 K are revealed by symmetric, lambda-type variations of the heat capacity. A more diffuse thermal effect characterizes the I4/mcm to cubic Pm3m transition at 1440 K, above which the cubic phase shows an apparently low heat capacity at the highest temperatures. With the resolution of the x-ray technique, only the transition from orthorhombic Pbnm to orthorhombic Cmcm at 970 K was detected with a small volume change of 0.14%. Thermal expansion below 970 K is constant at 2.98(2) 10(-5) K-1. At higher temperatures, the apparent thermal expansion decreases smoothly from 2.78(2) to 2.43(2) 10(-5) K-1 between 1000 and 1800 K. With recent data on CaTiO3, the effects of (Ca,Sr) and (Ti,Zr) substitutions on thermal expansion and on the energetics of the phase transitions are discussed.
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页码:3013 / 3022
页数:10
相关论文
共 41 条
[1]   STRUCTURE OF ORTHORHOMBIC SRZRO3 BY NEUTRON POWDER DIFFRACTION [J].
AHTEE, A ;
AHTEE, M ;
GLAZER, AM ;
HEWAT, AW .
ACTA CRYSTALLOGRAPHICA SECTION B-STRUCTURAL SCIENCE, 1976, 32 (DEC15) :3243-3246
[2]   HIGH-TEMPERATURE PHASES OF SRZRO3 [J].
AHTEE, M ;
GLAZER, AM ;
HEWAT, AW .
ACTA CRYSTALLOGRAPHICA SECTION B-STRUCTURAL SCIENCE, 1978, 34 (MAR) :752-758
[3]   MECHANISMS OF FERROELECTRIC AND STRUCTURAL PHASE-TRANSITIONS, STRUCTURAL DISTORTIONS IN PEROVSKITES [J].
ALEKSANDROV, KS .
FERROELECTRICS, 1978, 20 (1-2) :61-67
[4]  
ALEKSANDROV KS, 1976, FERROELECTRICS, V16, P801
[5]   THERMAL EXPANSION COEFFICIENTS OF ZIRCONATE CERAMICS [J].
BRANSON, DL .
JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 1965, 48 (08) :441-&
[6]   HIGH-TEMPERATURE PHASE TRANSITIONS IN SRZRO3 [J].
CARLSSON, L .
ACTA CRYSTALLOGRAPHICA, 1967, 23 :901-&
[7]  
CORFUNDKE EHP, 1989, THERMOCHEMICAL DATA
[8]   HIGH-TEMPERATURE HEAT CONTENTS OF SOME ZIRCONIUM-CONTAINING SUBSTANCES [J].
COUGHLIN, JP ;
KING, EG .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1950, 72 (05) :2262-2265
[9]   HIGH TEMPERATURE HEAT CONTENTS OF METATITANATES AND ORTHOTITANATES OF BARIUM AND STRONTIUM [J].
COUGHLIN, JP ;
ORR, RL .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1953, 75 (03) :530-531
[10]  
DEVANARAYANAN S, 1968, INDIAN J PURE AP PHY, V6, P714