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Sudakshina Roy

Publications and source records attributed to Sudakshina Roy.

2 recordsLinked to original sources

Comparison of structure making/breaking properties of alkali metal ions Na+, K+ and Cs+ in water

The alkali metal ions in aqueous electrolyte solutions have strong influence on the surrounding network structure of water formed through hydrogen bonds. The extent of ionic perturbation to the structure of water depends on the nature of individual ions and the solute concentration. Experimental techniques like Neutron diffraction, X-ray diffraction, Raman spectroscopy, isotopic substitution study, viscosity measurements and related theoretical or simulation studies are used to understand the characteristics features of the structural changes in these solutions. Recent ultrasonic studies on aqueous solutions of NaCl, KCl and CsCl show anomalous changes in the variation of velocity (v) with increase in concentration (c) from very dilute to saturation limit. The experimental observations and theoretical or simulation studies available in the literature are considered to make a comparative study on the structure making/breaking properties of Na+, K+ and Cs+ ions in water and consequent effect in ultrasonic velocity change.

cond-mat.soft

Probing Aqueous Electrolytes with Fourier Spectrum Pulse-Echo Technique

The nature of variations of ultrasonic wave velocity(v) and attenuation constant(α) with the concentration(c) in aqueous solutions of NaCl, KCl and CsCl are investigated at room temperature(250C) at 1MHz and 2 MHz wave frequency. Fourier Spectrum Pulse-Echo (FSPE) technique is used to achieve better accuracy in measurement, particularly for α measurement. In NaCl and KCl abrupt changes in the values of v and α are noticed at particular solution concentrations whereas, for CsCl almost smooth variation in v is observed over the whole concentration range for both of the frequencies 1 and 2 MHz . The nature of variation in v and α in these solutions are analyzed in view of other spectroscopic studies. The well-known Jones-Dole equation that explains the viscosity(η) variation in many electrolyte solutions, offers satisfactory fits to the experimental velocity variation with parameter values characteristics of the sample.

physics.chem-ph