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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Palladium(II) chloride complexation: Spectrophotometric investigation in aqueous solutions from 5 to 125 degrees C and theoretical insight into Pd-Cl and Pd-OH2 interactions
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Palladium(II) chloride complexation: Spectrophotometric investigation in aqueous solutions from 5 to 125 degrees C and theoretical insight into Pd-Cl and Pd-OH2 interactions

机译:氯化钯(II)络合:5至125摄氏度水溶液中的分光光度法研究以及对Pd-Cl和Pd-OH2相互作用的理论理解

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Monomeric palladium(II) chlorct aqua complexes of the form PdCr(H2O)(4-r)(2-r) (r = [0,4]) were studied both experimentally and theoretically to gain insight on both the stabilities and the nature of palladium-chloride interactions.The thermodynamic stabilities of these complexes were studied in aqueous solutions from 5 to 125 degrees C with UV-vis spectrophotometry using a quartz flow-through cell. Tentative measurements up to 200 degrees C were also carried out in pressurised titanium and gold-lined optical cells but revealed important losses in soluble palladium. The strong ligand-to-metal charge transfer bands of the palladium complexes below 350 run were used to constrain the stepwise thermodynamic formation constants at each temperature, using results of singular value decompositions of the spectra over a broad range of palladium:chloride ratios and wavelengths. The temperature-dependent constants were used to obtain changes in enthalpy and in entropy for each reaction. The thermodynamic stabilities of PdCl(H2O)(3)(+), PdCl2(H2O)(2)(0), and PdCl3(H2O)(-) are larger at higher temperatures, whilst the one of PdCl42- is smaller. All changes in entropies are positive for the former three species, but negative for the latter, presumably due to a larger solvent reorganisation around the doubly charged PdCl42- species. The room temperature thermodynamic values derived from this study are also in agreement with previously published calorimetric data.Theoretical calculations on the intramolecular distributions of electrons in the different palladium(II) chloro aqua complexes, using the methods of atoms in molecules and of the electron localisation function, showed Pd-Cl and Pd-OH2 interactions to be of largely closed-shell/ionic nature. These interactions induce an important distortion of the outer core shell electrons of Pd, as well as stable accumulations of electrons between adjacent Pd-Cl and Pd-OH2 bonds known as ligand opposed core charge concentrations. Copyright (c) 2005 Elsevier Ltd.
机译:通过实验和理论研究形式为PdCr(H2O)(4-r)(2-r)(r = [0,4])的单体钯(II)氯水配合物,以了解其稳定性和性质使用石英流通池通过紫外可见分光光度法研究了这些络合物在5至125℃水溶液中的热力学稳定性。在加压的钛和衬金的光学电池中也进行了高达200摄氏度的初步测量,但显示出可溶性钯的重大损失。钯配合物在350纳米以下的强配体-金属电荷转移带在每个温度下用于限制逐步的热力学形成常数,使用的结果是在宽范围的钯:氯化物比和波长范围内光谱的奇异值分解结果。温度相关的常数用于获得每个反应的焓和熵的变化。 PdCl(H2O)(3)(+),PdCl2(H2O)(2)(0)和PdCl3(H2O)(-)的热力学稳定性在较高的温度下较大,而PdCl42-的其中一个较小。熵的所有变化对前三个物种都是正的,但对后者来说是负的,大概是由于在双电荷的PdCl42-物种周围较大的溶剂重组。这项研究得出的室温热力学值也与先前发表的量热数据一致。使用分子中原子的方法和电子局域性对不同钯(II)氯水配合物中电子的分子内分布进行理论计算功能,表明Pd-Cl和Pd-OH2相互作用主要是闭壳/离子性质。这些相互作用导致Pd的外壳核电子发生严重变形,以及相邻Pd-Cl和Pd-OH2键之间的电子稳定积累,这被称为配体相对核电荷浓度。版权所有(c)2005 Elsevier Ltd.

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