IONIC EQUILIBRIUM BETWEEN OCTAHEDRAL AND TETRAHEDRAL COMPLEXES IN LIQUID ALUMINUM-SODIUM FLUORIDE MIXTURES

被引:10
作者
AKDENIZ, Z
TOSI, MP
机构
[1] ISTANBUL UNIV,DEPT PHYS,ISTANBUL,TURKEY
[2] UNIV TRIESTE,I-34127 TRIESTE,ITALY
关键词
binding free energy; Covalent bonding; halogen polarizability;
D O I
10.1080/00319109008028474
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
An earlier statistical mechanical theory of complexing in molten mixtures of polyvalent metal halides and alkali halides is extended to situations in which an ionic equilibrium is established between two different types of complexes. The specific systems of interest are the mixtures of aluminium fluoride and sodium fluoride, in which early Raman scattering experiments by Gilbert. Mamantov and Begun have demonstrated coexistence of octahedral (A1F6)3-units and tetrahedral (AIF4) units in the concentration range between 0.25 and 0.5 of A1FVOur treatment is based on a simple ionic model and involves (i) an evaluation of binding free energies for the two units in vacuo, showing that (A1F6)3-is strongly unstable against dissociation in this state, and (ii) a statistical mechanical theory of the liquid mixture, in which (A1F6)3-is stabilized by ionic screening interactions. The resulting ionic equilibrium in the liquid involves, in excellent agreement with the Raman data, strong suppression of dissociation for (AlFh)3-, except near the composition corresponding to criolite (AlF3.3NaF). The temperature dependence of the ionic equilibrium is also evaluated, with special attention to molten criolite. Analogous calculations on aluminium-sodium chloride mixtures show that in these systems the equilibrium is completely shifted in favour of the (AIC14)-species, as a consequence of its stabilization by halogen polarizability. © 1990, Taylor & Francis Group, LLC. All rights reserved.
引用
收藏
页码:127 / 136
页数:10
相关论文
共 20 条
[11]  
Grjotheim K., 1977, ALUMINIUM ELECTROLYS
[12]   INFRARED-EMISSION SPECTRA OF ALKALI CHLOROALUMINATES AND RELATED MELTS [J].
HVISTENDAHL, J ;
KLAEBOE, P ;
RYTTER, E ;
OYE, HA .
INORGANIC CHEMISTRY, 1984, 23 (06) :706-715
[13]   BINDING OF TETRAHEDRAL HALOCOMPLEXES OF POLYVALENT METAL-IONS IN AN IONIC MODEL [J].
LI, W ;
TOSI, MP .
NUOVO CIMENTO DELLA SOCIETA ITALIANA DI FISICA D-CONDENSED MATTER ATOMIC MOLECULAR AND CHEMICAL PHYSICS FLUIDS PLASMAS BIOPHYSICS, 1988, 10 (12) :1497-1508
[14]   RAMAN SPECTRA OF KCL-ALCL3 MELTS AND NORMAL COORDINATE ANALYSIS OF AL2CL7 [J].
OYE, HA ;
RYTTER, E ;
KLAEBOE, P ;
CYVIN, SJ .
ACTA CHEMICA SCANDINAVICA, 1971, 25 (02) :559-&
[15]   RAMAN SPECTROSCOPIC STUDIES OF YTTRIUM(III) CHLORIDE-ALKALI METAL CHLORIDE MELTS AND OF CS2NAYCL6 AND YCL3 SOLID COMPOUNDS [J].
PAPATHEODOROU, GN .
JOURNAL OF CHEMICAL PHYSICS, 1977, 66 (07) :2893-2900
[16]  
REISFELD MJ, 1973, SPECTROCHIM ACTA A, VA 29, P1923
[17]   OPTICAL-ABSORPTION OF DILUTE-SOLUTIONS OF METALS IN MOLTEN-SALTS [J].
SENATORE, G ;
PARRINELLO, M ;
TOSI, MP .
PHILOSOPHICAL MAGAZINE B-PHYSICS OF CONDENSED MATTER STATISTICAL MECHANICS ELECTRONIC OPTICAL AND MAGNETIC PROPERTIES, 1980, 41 (06) :595-609
[18]   MEAN SPHERICAL MODEL INTEGRAL-EQUATION FOR CHARGED HARD SPHERES .2. RESULTS [J].
WAISMAN, E ;
LEBOWITZ, JL .
JOURNAL OF CHEMICAL PHYSICS, 1972, 56 (06) :3093-&
[19]   MEAN SPHERICAL MODEL INTEGRAL-EQUATION FOR CHARGED HARD SPHERES .1. METHOD OF SOLUTION [J].
WAISMAN, E ;
LEBOWITZ, JL .
JOURNAL OF CHEMICAL PHYSICS, 1972, 56 (06) :3086-&
[20]  
[No title captured]