Solvation spectra. Part 41.—Absolute proton magnetic resonance shifts for water protons induced by cations and anions in aqueous solutions

J. Davies, S. Ormondroyd, M. Symons
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引用次数: 19

Abstract

Nuclear magnetic resonance salt shifts have been determined for a wide range of electrolytes in water at 273 and 298 K. Salt shifts for alkali metal chlorides have also been determined at 313, 333 and 353 K. Two independent methods are discussed for assigning an absolute shift to the chloride ion. The absolute values so derived are used to set up scales of absolute ionic shifts, which are discussed in terms of ion-solvent interactions. Although we do not discount the possibility of long-range effects, we can explain our results by reference only to the primary solvation layers. The anion shifts were mainly dependent on the basicity of the anion, but various anomalous cases are discussed.
溶剂化作用光谱。41岁的一部分。水溶液中阳离子和阴离子诱导的水质子的绝对质子磁共振位移
在273和298 K时,已经测定了各种电解质在水中的核磁共振盐移。碱金属氯化物在313、333和353 K时的盐移也已测定。讨论了两种独立的方法来确定氯离子的绝对位移。由此得到的绝对值用来建立离子绝对位移的尺度,并从离子-溶剂相互作用的角度来讨论离子绝对位移。虽然我们不排除长期影响的可能性,但我们可以只参考初级溶剂化层来解释我们的结果。阴离子的位移主要取决于阴离子的碱性,但也讨论了各种异常情况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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