首页> 外文期刊>Inorganica Chimica Acta >THE SYNTHESIS, HYDROLYSIS KINETICS AND STRUCTURES OF NICKEL(II) AND COBALT(III) COMPLEXES OF MESO AND RACEMIC 1,2-DIAMINOCYCLOHEXANE
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THE SYNTHESIS, HYDROLYSIS KINETICS AND STRUCTURES OF NICKEL(II) AND COBALT(III) COMPLEXES OF MESO AND RACEMIC 1,2-DIAMINOCYCLOHEXANE

机译:内消旋和1,2-二氨基环己烷的镍(II)和钴(III)配合物的合成,水解动力学和结构

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摘要

Commercial samples of 1,2-diaminocyclohexane (chxn) are available as approximately equal mixtures of the cis-meso-RS- and trans-racemic-RR,SS-isomers. The two forms of the ligand can be separated via their Ni(II) salts (R. Saito and Y. Kidani, Chem. Lett., (1976) 123) to give yellow square planar C-2h delta,lambda-[Ni(cis-RS-chxn)(2)]Cl-2 (1) and blue octahedral delta,lambda-[Ni(trans-RR-chxn)(trans-SS-chxn)(OH2)(2)]Cl-2 (2) as confirmed by their single crystal X-ray structures. A transmetalation reaction of 2 with CoCl2.6H(2)O in methanol and air bubbling gives two distinct isomeric forms of trans-[CoCl2(chxn)(2)](+), 3 and 4, as the chloride (3) and perchlorate (4) salts, respectively. These have been assigned trans-[CoCl2(RR-chxn)(SS-chxn)]ClO4 (4) and {trans-[CoCl2(RR-chxn)(2)]Cl plus trans-[CoCl2(SS-chxn)(2)]Cl} (3), respectively, on the basis of a sequence of chiral interconversions, as only 3 can be separated into chiral forms. Acid hydrolysis rates (k(H)(1),s(-1)) and activation parameters (Delta H-not equal, kJ mol(-1); Delta S-not equal, J K-1 mol(-1)) for the loss of the first chloro ligand and the Hg2+-assisted chloride release rates (k(Hg)(2), M-1 s(-1)) for the loss of the second chloro ligand from isomers 3 and 4, are: 3, 10(5) k(H)(1)=10.6 s(-1), Delta H-not equal=103+/-3, Delta S-not equal=+23+/-6; 10(3) k(Hg)(2)=27.9 M-1 s(-1), Delta H-not equal=103+/-3, Delta S-not equal=+70+/-6; 4: 10(5) k(H)(1) s(-1)=11.3, Delta H-not equal=97+3 Delta S-not equal=+5+/-6; 10(3) k(Hg)(2)=34.1 M-1 s(-1), Delta H-not equal=91.1+/-2, Delta S-not equal=+32.6+/-4. [References: 49]
机译:1,2-二氨基环己烷(chxn)的商业样品可作为顺式-间-RS-和反式-RR,SS-异构体的近似相等混合物获得。两种形式的配体可以通过它们的Ni(II)盐分开(R. Saito和Y.Kidani,Chem。Lett。,(1976)123),得到黄色方形平面C-2hδ,λ-[Ni(顺式-RS-chxn)(2)] Cl-2(1)和蓝色八面体δ,lambda- [Ni(trans-RR-chxn)(trans-SS-chxn)(OH2)(2)] Cl-2( 2)由其单晶X射线结构证实。 2与CoCl2.6H(2)O在甲醇中的金属转移反应和空气鼓泡,产生两种不同的反式[CoCl2(chxn)(2)](+),3和4的异构体形式,即氯化物(3)和高氯酸盐(4)盐。这些已被指定为反-[CoCl2(RR-chxn)(SS-chxn)] ClO4(4)和{反-[CoCl2(RR-chxn)(2)] Cl加反-[CoCl2(SS-chxn)( 2)] Cl}(3)分别基于手性互变序列,因为只有3个可以分离为手性形式。酸水解速率(k(H)(1),s(-1))和活化参数(Delta H不相等,kJ mol(-1); Delta S不相等,J K-1 mol(-1) )对于第一个氯配体的损失和Hg2 +辅助氯化物的释放速率(k(Hg)(2),M-1 s(-1))从异构体3和4中损失的第二个氯配体是:3,10(5)k(H)(1)= 10.6 s(-1),Delta H-不等于= 103 +/- 3,Delta S-不等于= + 23 +/- 6; 10(3)k(Hg)(2)= 27.9 M-1 s(-1),Delta H-不等于= 103 +/- 3,Delta S-不等于= + 70 +/- 6; 4:10(5)k(H)(1)s(-1)= 11.3,ΔH-不等于= 97 + 3ΔS-不等于= + 5 +/- 6; 10(3)k(Hg)(2)= 34.1 M-1 s(-1),Delta H不等于= 91.1 +/- 2,Delta S不等于= + 32.6 +/- 4。 [参考:49]

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