探讨不同温度下乙酸铵对l-天冬氨酸在水介质中体积、粘度和导电性能的影响

IF 1.4 4区 化学 Q4 CHEMISTRY, PHYSICAL Journal of Solution Chemistry Pub Date : 2023-12-01 DOI:10.1007/s10953-023-01335-7
Malabika Talukdar, Soumy Dey, Abhinandan Panda, Shreyasee Pan, Sulochana Singh
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引用次数: 0

摘要

本文对l-天冬氨酸在水和醋酸铵水溶液中的一些理化性质进行了研究。测定了不同温度下溶液的密度、粘度和电导率。体积参数如表观摩尔体积\(({V}_{\Phi })\)、偏摩尔体积\(({V}_{\Phi }^{0})\)、偏摩尔膨胀率\(({E}_{\Phi }^{0})\)和海普勒常数\(({{\partial }^{2}{V}_{\Phi }^{0}/{\partial T}^{2})}_{{p}})\);粘度参数如相对粘度\({(\eta }_{r })\)、粘度系数\({(B}_{J }\mathrm\,{\text{and} }\,{ A}_{F})\)、由实验测得的密度值和黏度值推导出溶剂和溶质黏性流动激活的吉布斯自由能分别为\({(\Delta \mu }_{1}^{\#,0}\mathrm\,\text{ and }\,{\Delta \mu }_{2}^{\#,0})\))和相应的焓变\({\Delta H}_{2}^{\#,0}\)和熵变\({\Delta S}_{2}^{\#,0}\)。从离子-离子和离子-亲水性相互作用的角度分析了这些参数随浓度和温度的变化。通过分析摩尔电导(Λm)、缔合常数\({(K}_\text{A})\)、瓦尔登积和热力学函数,确定了离子对在溶液中形成的可能性及其对带电粒子迁移的影响。这些参数与l-天冬氨酸在水介质中与乙酸铵相互作用时发生的水结构变化定性相关。
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Exploring the Effect of Ammonium Acetate on Volumetric, Viscometric and Conductive Properties of l-Aspartic Acid in Aqueous Medium at Different Temperatures

Study of some physicochemical properties of l-aspartic aid in water and aqueous ammonium acetate has been undertaken for this investigation. Density, viscosity and conductivity of the solutions were measured at different temperatures. Volumetric parameters such as apparent molar volume \(({V}_{\Phi })\), partial molar volume \(({V}_{\Phi }^{0})\), partial molar expansibility \(({E}_{\Phi }^{0})\) and Hepler’s constant \(({{\partial }^{2}{V}_{\Phi }^{0}/{\partial T}^{2})}_{{p}})\) and viscometric parameters such as relative viscosity\({(\eta }_{r })\), viscosity coefficients \({(B}_{J }\mathrm\,{\text{and} }\,{ A}_{F})\), Gibbs free energy of activation of viscous flow of solvent and solute \({(\Delta \mu }_{1}^{\#,0}\mathrm\,\text{ and }\,{\Delta \mu }_{2}^{\#,0})\) respectively) and corresponding change in enthalpy \({\Delta H}_{2}^{\#,0}\) and entropy \({\Delta S}_{2}^{\#,0}\) have been derived from the experimentally measured density and viscosity values. Variation of these parameters with concentration and temperature was analysed in the light of ion–ion and ion–hydrophilic interactions. The possibility of ion pair formation and its effect on migration of charged particles in solution have been determined by analysing the molar conductance (Λm), association constant \({(K}_\text{A})\), Walden product and thermodynamic functions. These parameters were qualitatively correlated with changes in structure of water that occurs when l-Aspartic acid interacts with ammonium acetate in aqueous media.

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来源期刊
Journal of Solution Chemistry
Journal of Solution Chemistry 化学-物理化学
CiteScore
2.30
自引率
0.00%
发文量
87
审稿时长
3-8 weeks
期刊介绍: Journal of Solution Chemistry offers a forum for research on the physical chemistry of liquid solutions in such fields as physical chemistry, chemical physics, molecular biology, statistical mechanics, biochemistry, and biophysics. The emphasis is on papers in which the solvent plays a dominant rather than incidental role. Featured topics include experimental investigations of the dielectric, spectroscopic, thermodynamic, transport, or relaxation properties of both electrolytes and nonelectrolytes in liquid solutions.
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