首页> 外文会议>Conference on Visual Information Processing Ⅹ Apr 19-20, 2001, Orlando, USA >Pulse-echo overlap technique of signal processing and ultrasonic velocity measurements of Cu(I) and some tetraalkylammonium salts in binary organic mixtures to study various structural effects
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Pulse-echo overlap technique of signal processing and ultrasonic velocity measurements of Cu(I) and some tetraalkylammonium salts in binary organic mixtures to study various structural effects

机译:脉冲回波重叠技术对二元有机混合物中Cu(I)和一些四烷基铵盐的信号处理和超声速度测量,以研究各种结构效应

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The study of ion-solvation has attarcted the attention of many workers during the last few years. In case of binary solvent mixtures, both the solvent components play an important role towards solvation of ions.The physical extreme of solvation is the transfer of an ion from vaccum to the solvent while the chemical extreme of solvation describes the stoichiometric chemical reaction with the solvent. The behavior of eletrolytes in solution depends mainly on ion-ion and ion-solvent interactions. The ion-ion interaction in general, is stronger than the ion-solvent interactions. Ion-ion interaction in dilute electrolytic solutions is now theoratically well understood,but ion-solvent interaction(ion solvation)still remain partially explained.The term preferential solvation is used when the composition of the solvent components in mixed solvents in the neighbourhood of cation and anion furnished by an electrolyte is different from that in the bulk of solution. The solvation behavior of ions in mixed solvent has become an important subject of solution chemistry for last few years. Since in mixed solvent systems the dielectric constant and viscosity of the medium can be varied to a desired value, Binary mixture of water with organic solvents have been frequently used for the study of eletrolytic solutions. In such solvent mixtures, the solvent structural effects are genrally very strong. Consequently, ion solvation effects are overshadowed by the solvent structural effects. In order to minimize solvent structural effects attempts had been made for the study of ion-solvent interactions in binary mixtures of non-aqueous solvents with a non-polar component. The non-polar component of the solvent mixture played no significant role in ion solvation except to change the solvent properties such as dielectric constant and viscosity of the medium. Therefore, in such solvent systems the solvation effects considered to be only due to the polar component. Binary solvent mixtures comprising of two highly polar non-aqueous solvents were recently employed for the study of preferential solvation of ions.
机译:在过去的几年中,离子溶剂化的研究引起了许多工人的注意。在二元溶剂混合物的情况下,两种溶剂组分都对离子的溶剂化起着重要作用。溶剂化的物理极限是离子从真空向溶剂的转移,而溶剂化的化学极限描述了与溶剂的化学计量化学反应。 。溶液中电解质的行为主要取决于离子与离子和离子与溶剂的相互作用。通常,离子-离子相互作用比离子-溶剂相互作用强。从理论上讲,稀电解质溶液中的离子相互作用已得到了很好的理解,但离子-溶剂相互作用(离子溶剂化)仍得到部分解释。术语优先溶剂化是指当溶剂组分在混合溶剂中位于阳离子和阳离子附近时使用。电解质提供的阴离子与溶液中的阴离子不同。近年来,离子在混合溶剂中的溶剂化行为已成为溶液化学的重要课题。由于在混合溶剂系统中,介质的介电常数和粘度可以变化到所需的值,因此水与有机溶剂的二元混合物经常被用于研究电溶溶液。在这种溶剂混合物中,溶剂的结构效果通常非常强。因此,离子的溶剂化作用被溶剂的结构作用所掩盖。为了使溶剂的结构效应最小化,已经尝试研究非水溶剂与非极性组分的二元混合物中的离子-溶剂相互作用。溶剂混合物的非极性组分在离子溶剂化中没有显着作用,只是改变了溶剂的性能,例如介电常数和介质粘度。因此,在这种溶剂体系中,溶剂化作用仅归因于极性组分。最近,由两种高极性非水溶剂组成的二元溶剂混合物被用于研究离子的优先溶剂化。

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