首页> 外文期刊>Journal of Inclusion Phenomena and Macrocyclic Chemistry >Study of complex formation between dicyclohexyl-18-crown-6 and UO2 2+ cation in some binary mixed non-aqueous solvents using conductometric method
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Study of complex formation between dicyclohexyl-18-crown-6 and UO2 2+ cation in some binary mixed non-aqueous solvents using conductometric method

机译:电导法研究二元混合非水溶剂中二环己基-18-crown-6与UO2 2 + 阳离子的络合物形成

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In the present work, the complexation process between UO2 2+ cation and the macrocyclic ligand, dicyclohexyl-18-crown-6 (DCH18C6) was studied in ethyl acetate/1,2-dichloroethane (EtOAc/DCE), acetonitrile/1,2-dichloroethane (AN/DCE), methanol/1,2-dichloroethane (MeOH/DCE) and ethanol/1,2-dichloroethane (EtOH/DCE) binary solutions at different temperatures using the conductometric method. The conductance data show that in most cases, the stoichiometry of the complex formed between DCH18C6 and UO2 2+ cation is 1:1 [M:L], but in some solvent systems also a 1:2 [M:L2] complex is formed in solutions. The values of stability constant of (DCH18C6·UO2)2+ complex which were obtained from conductometric data, show that the stability of the complex is affected by the nature and also the composition of the solvent system and in all cases, a non-linear behavior is observed for the variation of (log K f) of the (DCH18C6·UO2)2+ complex versus the composition of the binary mixed solvents. The values of thermodynamic quantities $ Updelta H_{c}^{circ} $ and $ Updelta S_{c}^{circ} $ for formation of (DCH18C6·UO2)2+ complex were obtained from temperature dependence of the stability constant using the van’t Hoff plots. The experimental results show that depending on the nature and composition of the solvent systems, the complex is enthalpy stabilized or destabilized, but in most cases, it is stabilized from entropy view point and both thermodynamic parameters are affected by the nature and composition of the binary mixed solutions.
机译:在目前的工作中,研究了在乙酸乙酯/ 1,2-二氯乙烷(EtOAc /乙酸乙酯)中,UO2 2 + 阳离子与大环配体二环己基-18-冠-6(DCH18C6)的络合过程。 DCE),乙腈/ 1,2-二氯乙烷(AN / DCE),甲醇/ 1,2-二氯乙烷(MeOH / DCE)和乙醇/ 1,2-二氯乙烷(EtOH / DCE)二元溶液,采用电导法。电导数据表明,在大多数情况下,DCH18C6与UO2 2 + 阳离子形成的配合物的化学计量为1:1 [M:L],但在某些溶剂系统中,其化学计量也为1:2 [M:L2 ]络合物在溶液中形成。从电导数据获得的(DCH18C6·UO2 )2 + 配合物的稳定常数值表明,配合物的稳定性受溶剂体系和溶剂体系的性质以及组成的影响。在所有情况下,观察到(DCH18C6·UO2 )2 + 配合物的(log K f )变化与二元混合溶剂组成的非线性关系。从(DCH18C6·UO2 )2 + 形成的热力学量$ Updelta H_ {c} ^ {circ} $和$ Updelta S_ {c} ^ {circ} $的值从使用van't Hoff曲线得出的稳定常数的温度依赖性。实验结果表明,取决于溶剂体系的性质和组成,该络合物是焓稳定的或不稳定的,但是在大多数情况下,从熵的角度来看,它是稳定的,并且两个热力学参数均受二元化合物的性质和组成的影响。混合解决方案。

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