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首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >Supramolecular interactions between Co(CN)(5)(SO3)(4-) and polyammonium macrocyclic receptors
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Supramolecular interactions between Co(CN)(5)(SO3)(4-) and polyammonium macrocyclic receptors

机译:Co(CN)(5)(SO3)(4-)与聚铵大环受体之间的超分子相互作用

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The acid-base properties as well as the photochemical reactivity of the co-ordination compound K-4[Co(CN)(5)(SO3)] in the presence of three polyammonium macrocyclic receptors were studied in aqueous solution. The pK(a) of the free complex (3.9) (sulfite deprotonation) changed to pK(a) <0.5 upon complexation with the receptors. The quantum yield for sulfite photoaquation of the free complex in the basic form (Phi = 0.85 +/- 0.09) decreased to 0.05 +/- 0.01, 0.12 +/- 0.03 and 0.45 +/- 0.09 in the presence of[24]aneN(8)H(8)(8+), [30]aneN(10)H(10)(10+) and [32]aneN(8)H(8)(8+), respectively. For the acidic form of the free complex (Phi = 0.40 +/- 0.05) the quantum yield was not affected by supercomplexation with [32]aneN(8)H(8)(8+). For the adducts formed from the other two macrocyclic receptors it was not possible to evaluate the quantum yields of the acidic forms, because protonation was not complete even at very high proton concentrations. The results were interpreted in terms of second-sphere interactions involving hydrogen bonding between the complex and the macrocycles. In the case of [32]aneN(8)H(8)(8+) the experimental results are compatible with a structure in which the cyanides are involved in hydrogen bonding but the sulfite ligand is not. In the two other supercomplexes the sulfite ligand seems to be involved in hydrogen bonding. [References: 36]
机译:在水溶液中研究了三种多铵大环受体存在下配位化合物K-4 [Co(CN)(5)(SO3)]的酸碱性质以及光化学反应性。与受体复合后,游离复合物(3.9)(亚硫酸盐去质子化)的pK(a)变为pK(a)<0.5。在[24] aneN存在下,基本形式的游离配合物(Phi = 0.85 +/- 0.09)的亚硫酸盐光子化的量子产率降低至0.05 +/- 0.01、0.12 +/- 0.03和0.45 +/- 0.09 (8)H(8)(8 +),[30] aneN(10)H(10)(10+)和[32] aneN(8)H(8)(8+)。对于游离配合物的酸性形式(Phi = 0.40 +/- 0.05),量子产率不受[32] aneN(8)H(8)(8+)超配合作用的影响。对于由其他两个大环受体形成的加合物,不可能评估酸性形式的量子产率,因为即使在非常高的质子浓度下质子化也不完整。用涉及复杂物和大环之间氢键的第二球相互作用来解释结果。在[32] aneN(8)H(8)(8+)的情况下,实验结果与氰化物参与氢键结合而亚硫酸盐配体不参与的结构兼容。在另两个超配合物中,亚硫酸盐配体似乎参与氢键。 [参考:36]

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