KINETICS OF ANATION OF CR(III) HYDROLYTIC OLIGOMERS - REACTION OF DIMER WITH SULFATE

被引:12
作者
GRACE, MR [1 ]
SPICCIA, L [1 ]
机构
[1] MONASH UNIV,DEPT CHEM,CLAYTON,VIC 3168,AUSTRALIA
关键词
D O I
10.1016/S0020-1693(00)83820-7
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
The reaction between sulfate and the Cr(III) hydrolytic dimer, [(H2O)(4)Cr(mu-OH)(2)Cr(OH2)(4)](4+), has been followed in the pH range 3.5-4.4, [sulfate]=0.1-0.3 M, T=25 degrees C and I=1.0 M and shown to involve two clearly separable processes: monodentate attachment of sulfate (anation) to give [(H2O)(4)Cr(mu-OH)(2)(mu-SO4)Cr(OH2)(3)](2+) followed by ring closure to give a sulfate bridged dimer, [(H2O)(3)Cr(mu-OH)(2)(mu-SO4)Cr(OH2)(3)](2+). Equilibrium measurements have shown that the first step is irreversible under the conditions of the kinetic measurements. Although definite conclusions about the reversibility of bridge formation could not be made this process is also likely to be irreversible. The observed rate constant for the anation process was found to be independent of [sulfate] suggesting that extensive ion-pairing occurs between the oppositely charged reactants. The rate constants for both anation and bridge formation were found to be linearly dependent on 1/[H+]. This is attributed to deprotonation of dimer-sulfate ion-pairs (charge 2+) and the monodentate sulfate complex (charge 2+). The linear dependence also suggests that the concentration of deprotonated species is low in the pH range 3.5-4.4. This is reasonable since pK(a1) for ions of this charge are usually greater than 5. From the kinetic data, rate accelerations of at least 30-fold have been estimated to accompany deprotonation of the reactants. They are of similar magnitude to those reported previously for other reactions involving the Cr(III) hydrolytic dimer, viz. dimerization of dimer to give tetramer and intramolecular interconversion between singly and doubly bridged dimer forms. It is concluded that deprotonated sulfato-dimer species play an important part in the tanning process since their greater reactivity in substitution processes will aid in the cross-linking of collagen.
引用
收藏
页码:103 / 110
页数:8
相关论文
共 28 条
[1]  
BANASZCZYK M, 1991, INORG CHEM, V30, P1973
[2]   COMPLEX CHEMISTRY OF HYDROUS CHROMIUM(III) OXIDE SOL FORMATION [J].
BELL, A ;
MATIJEVIC, E .
JOURNAL OF INORGANIC & NUCLEAR CHEMISTRY, 1975, 37 (04) :907-912
[3]   ALKALINE-HYDROLYSIS OF BRIDGED AND MONODENTATE SULFATO COMPLEXES OF COBALT(III) - X-RAY STRUCTURE OF [CO(EN)2(OS(O)2O)]2ZNCL4.H2O CONTAINING CIS-BIS(MU-SULFATO) BRIDGES [J].
BUCKINGHAM, DA ;
CLARK, CR ;
SIMPSON, J ;
ROBINSON, WT .
INORGANIC CHEMISTRY, 1988, 27 (20) :3544-3547
[4]  
COVINGTON AD, 1986, J SOC LEATH TECH CH, V70, P33
[5]  
COVINGTON AD, 1987, J AM LEATHER CHEM AS, V82, P1
[6]  
CRIMP SJ, UNPUB INORG CHEM
[7]  
Davies C.W., 1962, ION ASS
[8]  
DAVIS MH, 1985, J SOC LEATH TECH CH, V69, P130
[9]   PREPARATION AND PARTICLE SIZE ANALYSIS OF CHROMIUM HYDROXIDE HYDROSOLS OF NARROW SIZE DISTRIBUTIONS [J].
DEMCHAK, R ;
MATIJEVI.E .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 1969, 31 (02) :257-&
[10]   AN INFRARED STUDY OF MONOSULFATOPENTAAQUOCHROMIUM(3) CHLORIDE [J].
FINHOLT, JE ;
ANDERSON, RW ;
FYFE, JA ;
CAULTON, KG .
INORGANIC CHEMISTRY, 1965, 4 (01) :43-&