Formation and dissociation of tetrahedral nickel(II) and cobalt(II) complexes of 'dithioimidodiphosphato' ligands, measurement of kinetically determined stability constants, and kinetic investigations of the rapid formation of tetrahedral bis(ligand)copper(II) complexes and their rates of reduction to trinuclear copper(I) species

被引:23
作者
Moore, P [1 ]
Errington, W [1 ]
Sangha, SP [1 ]
机构
[1] Univ Warwick, Dept Chem, Coventry CV4 7AL, W Midlands, England
关键词
D O I
10.1002/hlca.200590055
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The stopped-flow technique was used to measure the rates of formation and dissociation of tetrahedral [ML2] complexes (M2+ = Ni2+ or Co2+) of four bidentate S-2-donor 'dithioimidodiphosphato' ligands L- (HL = [(RR2)-R-1 P(= S)]NH[P(= S)(RR4)-R-3], R-1 to R-4 = alkyl) at 25.0 degrees in MeOH/H2O 95:5 (v/v) solution and in the presence of either MOPS (= 3-(morpholin-4-yl)propanc-1-sulfonic acid) or 2,6-lutidine (= 2,6-dimethylpyridine) buffers. ne kinetically determined equilibrium formation constants for [ML](+) ions (M = Ni or Co) are 10(-5) K = 0.50 +/- 0.01 or 1.64 +/- 0.071 mol(-1) for L = L-3 (R-1 = R-2 = Me(CH2)(2)CH(Me), R-3 = R-4 = Mc(2)CH), 1.27 +/- 0.02 or 7.93 +/- 0.091 mol(-1) for L = L-7 (R-1 to R-4 = Me2CHCH2), 0.88 +/- 0.04 or 3.84 +/- 0.131 mol(-1) for L = L-8 (R-1 to R-4 = Me2CH), and in case of Ni2+ 1.88 +/- 0.04 1 mol(-1) for L = L-6 (R-1 = R-3 = Bu, R-2 = R-4 = 'Bu) (see Table 3; for L-3 and L-6 - L-8, see Table 1). Whereas the tetrahedral Ni2+ complexes dissociate more slowly than the analogous Co2+ species, in all cases, the Co2+ complexes arc more stable than those of Ni2+ due to their larger formation rate constants (Table 3). Reactions of Cu2+ with eight ligands HL (R-1 to R-4 = alkyl, alkoxy, aryl, and aryloxy) show that formation of intensely colored tetrahedral [(CuL2)-L-II] species is too fast be measured with the available stopped-flow apparatus (t(1/2) < 2 ms), but the subsequent rates of reduction of [(CuL2)-L-II] to give trinuclear products [(CU3L3)-L-1] are measurable. An X-ray analysis establishes the structure of one of the [Cu3L3] complexes, where R-1 = R-2 = Me2CHO and R-3 = R-4 = 2-(tert-butyl)phenyl (L = L-5), and a multiwavelength stopped-flow kinetic experiment establishes the spectrum of a tetrahedral [(CuL2)-L-II] species prior to the reduction reactions. The redox reactions proceed at 25.0 degrees with first-order rate constants in the range 0.285 s(-1) (R-1 to R-4 = PhO; L = L-11) to 2.58 10(-4) s(-1) (R-1 to R-4 = Me2CHCH2; L = L-7) (Table 4).
引用
收藏
页码:782 / 795
页数:14
相关论文
共 47 条
[21]   LOW-LYING ELECTRONIC-ENERGY LEVELS IN A SERIES OF HETEROBINUCLEAR COMPLEXES CONTAINING OCTAHEDRAL NICKEL(II) AND TETRAHEDRAL METAL(II) (COPPER, COBALT, AND MANGANESE) SPECIES [J].
BENCINI, A ;
CANESCHI, A ;
DEI, A ;
GATTESCHI, D ;
ZANCHINI, C ;
KAHN, O .
INORGANIC CHEMISTRY, 1986, 25 (09) :1374-1378
[22]   SPECTROSCOPY OF COMPLEX-FORMATION OF NICKEL(II), COPPER(II), SILVER(I), AND CADMIUM(II) WITH BENZAZOLYL-FORMAZANS - BEHAVIOR OF COMPLEXES IN A LIGAND-EXCHANGE WITH ETHYLENEDIAMINETETRAACETATE [J].
BEDNYAGINA, NP ;
DARIENKO, EP ;
SIDOROVA, LP ;
LIPUNOVA, GN ;
GULEMINA, NN ;
KHOLEVINSKAYA, LV ;
DANILINA, VG .
ZHURNAL OBSHCHEI KHIMII, 1976, 46 (01) :101-105
[23]   FORMATION OF DIHELICATE AND MONONUCLEAR COMPLEXES FROM ETHANE-BRIDGED DIMERIC BIPYRIDINE OR PHENANTHROLINE LIGANDS WITH COPPER(I), COBALT(II), AND IRON(II) CATIONS [J].
YOUINOU, MT ;
ZIESSEL, R ;
LEHN, JM .
INORGANIC CHEMISTRY, 1991, 30 (09) :2144-2148
[24]   METAL-ION INTERACTION WITH PENICILLINS .5. FORMATION AND STABILITY OF MIXED-LIGAND COMPLEXES OF COBALT(II), NICKEL(II), COPPER(II) AND ZINC(II) WITH 6-AMINOPENICILLANIC ACID AND NUCLEIC BASES [J].
MUKHERJEE, GN ;
GHOSH, TK .
JOURNAL OF THE INDIAN CHEMICAL SOCIETY, 1994, 71 (05) :249-254
[25]   KINETICS AND MECHANISM OF FORMATION AND DISSOCIATION OF COPPER(II) AND NICKEL(II) COMPLEXES OF THE SCHIFF-BASE BIS(ACETYLACETONE)ETHYLENEDIIMINE IN AQUEOUS-ORGANIC SOLVENT MEDIA [J].
GANGOPADHYAY, S ;
BANERJEE, RN ;
BANERJEA, D .
TRANSITION METAL CHEMISTRY, 1985, 10 (08) :310-315
[26]   Copper(II), nickel(II) and zinc(II) complexes of N,N',N'',N'''-tetrakis(2-hydroxypropyl)-1,4,8,11-tetra-azacyclotetradecane. Rates of formation and dissociation of the copper(II) complex [J].
Hay, RW ;
Hassan, MM .
POLYHEDRON, 1997, 16 (13) :2205-2211
[27]   Versatility of the bis(iminopyrrolylmethyl)amine ligand: tautomerism, protonation, helical chirality, and the secondary coordination sphere with halogen bonds in the formation of copper(II) and nickel(II) complexes [J].
Kumar, Rajnish ;
Guchhait, Tapas ;
Subramaniyan, Vasudevan ;
Schulzke, Carola ;
Mani, Ganesan .
DALTON TRANSACTIONS, 2020, 49 (39) :13840-13853
[28]   INFLUENCE OF COMPOSITION OF MIXED SOLVENTS ON STABILITY AND FORMATION-CONSTANTS OF COPPER-(II) AND NICKEL-(II) COMPLEXES OF SUBSTITUTED 1,2-DIOXIMES [J].
LINKE, D ;
UHLIG, E .
ZEITSCHRIFT FUR ANORGANISCHE UND ALLGEMEINE CHEMIE, 1976, 422 (03) :243-254
[29]   Complexes of 2,6-bis[N-(2′-pyridylmethyl)carbamy]pyridine:: formation of mononuclear complexes, and self-assembly of double helical dinuclear and tetranuclear copper(II) and trinuclear nickel(II) complexes [J].
Alcock, NW ;
Clarkson, G ;
Glover, PB ;
Lawrance, GA ;
Moore, P ;
Napitupulu, M .
DALTON TRANSACTIONS, 2005, (03) :518-527