通过热力学研究钒(IV)二乙酰丙酮酸和d -青霉胺在三种不同ph值下的三种不同配合物的生产规范

R. Hakimelahi, M. Mousazadeh
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引用次数: 1

摘要

用紫外/可见光谱从热力学角度研究了d- h2笔在pH=7.00、7.50和10.0时与[VO(acac)2]的结合行为。利用SQUAD软件分析了[VO(acac)2]的光学吸收光谱,得到了结合常数和化学计量。对不同温度下的结合常数的估计使我们能够利用范霍夫方程计算出所有的结合热力学参数。在pH=7.00、7.50和10.0时所描述的反应分别表现为放热、吸热和放热模式。d-青霉胺是一种潜在的三齿配体,但- COOH、NH3和S - H基团的pKa分别为1.99 ~ 2.00、8.0和10.6,导致S - H在pH=7.00和pH=7.50时不能释放质子,因此S的配位只能在强碱介质中进行。在pH=7.00时,d-H2Pen将[VO(acac)2]转化为钒基席夫碱配合物(配位模式为N2O2)。在pH=7.50时,d-H2Pen转化为HPen -, acac -与HPen -交换生成VO(HPen)2。很明显,配位是通过胺态氮和羧酸态氧形成的。在pH=10.0时,主要产物为钒基配合物,具有(S2O2)配位模式。对不同离子强度的氯化钾进行研究,根据每种介质中离子的数量证实了这些产物。在pH=7.00和7.50时,VO(acac)2与d-青霉胺的生成常数与离子强度无关,但在pH=10.0时,形成常数与离子强度的关系建立了debye - huckel型方程。
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The specification of the production of three different complexes via thermodynamic investigations between vanadyl (IV) bis(acetylacetonate) and D-penicillamine at three various pHs
d-H2Pen-binding behavior to [VO(acac)2] at pH=7.00, 7.50 and 10.0 has been studied in thermodynamic viewpoint using UV/VIS spectroscopy. The optical absorption spectra of [VO(acac)2] were analyzed in order to obtain binding constants and stoichiometries using SQUAD software. The estimation of binding constant at various temperatures enabled us to calculate all of the thermodynamic parameters of binding using the van't Hoff equation. Studies of described reactions at pH=7.00, 7.50 and 10.0 show exothermic, endothermic and exothermic modality, respectively. d-penicillamine is a potentially tridentate ligand, but the pKa for the ‒ COOH, NH3 and S‒ H groups are 1.99–2.00, 8.0 and 10.6, respectively, as a result S‒H can not release proton at pH=7.00 and pH=7.50, so the coordination of S is not possible except at strong alkali mediums. At pH=7.00, d-H2Pen converts [VO(acac)2] to a vanadyl Schiff base complex (coordination mode is N2O2). At pH=7.50, d-H2Pen is converted to HPen− and the exchange of acac− with HPen− produces VO(HPen)2. It is clear that the coordination is formed via amine nitrogen and carboxylate oxygen. At pH=10.0, the main product is a vanadyl complex with the (S2O2) coordination mode. Studies in different ionic strengths of KCl confirm these products according to the number of ions in each medium. The formation constants of the products of VO(acac)2 with d-penicillamine at pH=7.00 and 7.50 are independent of ionic strength, but a Debye–Huckel-type equation was established for the dependence of the formation constant on ionic strength at pH=10.0.
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