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首页> 外文期刊>Russian Journal of Coordination Chemistry >Dielectric Constant and Dielectric Relaxation in Aqueous Solutions of K2[PdCl4] and K2[PtCl4]
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Dielectric Constant and Dielectric Relaxation in Aqueous Solutions of K2[PdCl4] and K2[PtCl4]

机译:K2 [PdCl4]和K2 [PtCl4]水溶液的介电常数和介电弛豫

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摘要

The MW-dielectric properties of aqueous solutions of K2[PtCl4] (I) and K2[PdCl4] (II) were studied at 298 and 313 K in the frequency range (12-25 GHz) corresponding to the maximum dielectric constant dispersion for water and aqueous solutions of these salts. The low-frequency conductivities were measured. The static dielectric constant, the dielectric relaxation time, and the enthalpy of activation of the dielectric relaxation of the solutions were determined. Compared to pure water, in solutions of salts I and II, the orientational mobility of water molecules is increased and the network of H-bonds is violated more strongly than that of most other ions with hydrophilic hydration. It was demonstrated for the first time that dielectric spectroscopy can be used for analyzing complexation processes in systems containing aqua and hydroxo chloride complexes of metals.
机译:研究了K2 [PtCl4](I)和K2 [PdCl4](II)水溶液在298和313 K的频率范围(12-25 GHz)中的MW介电性能,该频率范围对应于水的最大介电常数分散和这些盐的水溶液。测量了低频电导率。确定了静态介电常数,介电弛豫时间和溶液的介电弛豫的活化焓。与纯水相比,在盐I和盐II的溶液中,与大多数其他具有亲水性水合离子的离子相比,在水分子I和II的溶液中,水分子的定向迁移性增加,并且氢键的网络受到更强烈的破坏。首次证明介电光谱学可用于分析包含金属的水合氯化物和氢氧化氯络合物的系统中的络合过程。

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