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Stability and solvation of alkali metal ion complexes with dibenzo-30-crown-10

机译:碱金属离子配合物与二苯并30-30冠10的稳定性和溶剂化

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Stability constants for the 1:1 complexes of dibenzo-30-crown-10 (DB30C10) with alkali metal ions have been determined at 25 degreesC in nitromethane and water by conductometry and capillary electrophoresis, respectively. Transfer activity coefficients of DB30C10 and its complexes from nitromethane to S (S = water, acetonitrile, propylene carbonate, methanol, and N,N-dimethylformamide) have been determined at 25 degreesC to evaluate the solvation properties. The stability constant in the poorly solvating solvent. nitromethane, decreases with increasing metal ion size, Na+ > K+ > Rb+ > Cs+, reflecting the intrinsic selectivity governed by electrostatic interaction between the metal ion and the ether oxygen atoms. It is also suggested that a part of the ether oxygen atoms does not bind to the metal ion in the Na(DB30C10)(+) complex. The aqueous stability constant varies as Na+ much less than K+ approximate to Rb+ approximate to Cs+: this selectivity pattern is similar to that in acetonitrile, propylene carbonate, and methanol. The complex stability in water is very low compared to that in the nonaqueous solvents, owing to hydrogen bonding of water to the oxygen atoms of the free crown ether. The transfer activity coefficient values show that DB30C10 shields all the metal ions effectively from the solvents and lead to the conclusion that the complexation selectivity in S receives a significant contribution from the solvation of the free metal ions. The Na(DB30C10)(+) complex has specific interaction with water, causing much lower K+/Na+ selectivity in H2O than in MeOH. (C) 2004 Elsevier B.V. All rights reserved.
机译:分别通过电导法和毛细管电泳在25℃下于硝基甲烷和水中测定了二苯并30-冠10(DB30C10)与碱金属离子的1:1配合物的稳定性常数。已在25℃下测定了DB30C10及其配合物从硝基甲烷到S(S =水,乙腈,碳酸亚丙酯,甲醇和N,N-二甲基甲酰胺)的转移活性系数,以评估其溶剂化性能。在不良溶剂中的稳定性常数。硝基甲烷随金属离子尺寸的增加而降低,Na +> K +> Rb +> Cs +,反映出固有选择性是由金属离子与醚氧原子之间的静电相互作用控制的。还建议一部分醚氧原子不与Na(DB30C10)(+)络合物中的金属离子结合。当Na +小于K +近似于Rb +近似于Cs +时,水稳定性常数变化:这种选择性模式与乙腈,碳酸亚丙酯和甲醇中的相似。由于水与游离冠醚的氧原子发生氢键结合,因此与非水溶剂相比,其在水中的复杂稳定性非常低。转移活度系数值表明,DB30C10有效地屏蔽了所有金属离子与溶剂的隔离,并得出结论,S中的络合选择性受游离金属离子的溶剂化的影响很大。 Na(DB30C10)(+)络合物与水具有特定的相互作用,因此在H2O中的K + / Na +选择性要比在MeOH中低得多。 (C)2004 Elsevier B.V.保留所有权利。

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