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首页> 外文期刊>Journal of Solution Chemistry >Thermodynamic Properties of L-Aspartates of Alkali and Alkali-Earth Metals in Aqueous Solutions at 298.15 and 310.15 K and Specific Cation Effects on Biomolecule Solvation
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Thermodynamic Properties of L-Aspartates of Alkali and Alkali-Earth Metals in Aqueous Solutions at 298.15 and 310.15 K and Specific Cation Effects on Biomolecule Solvation

机译:在298.15和310.15k的水溶液中碱和碱土金属L-天冬醇的热力学性质及生物分子溶剂的特异性阳离子作用

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Vapor pressure osmometry was applied to the systems calcium l-aspartate ((S)-aminobutanedioic acid calcium salt) + water for varying molalities of Ca-l-Asp (m (Ca-l-Asp) = 0.01-1.02 mol center dot kg(-1)) and guanidinium hydrochloride (methanamidine hydrochloride) + sodium L-aspartate ((S)-aminobutanedioic acid sodium salt) + water, varying the molalities of GndmCl and Na-l-Asp (m (Na-l-Asp) = 0.1, 0.25, 0.4, 0.57 mol center dot kg(-1) and m (GndmCl) = 0.1-1.1 mol center dot kg(-1)) at T = 298.15 K and 310.15 K. From vapor pressure osmometry, activities of water, and the corresponding osmotic coefficients of the mixtures Ca-l-Asp + water and Na-l-Asp + GndmCl + water have been calculated, both being directly related to the chemical potentials of the different species and therefore to their Gibbs energy. Mean molal ion activity coefficients were obtained from experimental data fits with the Pitzer equations and the corresponding dual and triple interaction parameters were derived for the Ca-l-Asp + water binary system. beta ((2)) Pitzer parameters different from zero are required for Ca-l-Asp in water to reproduce the osmotic coefficient decrease with increasing concentration. Mean Spherical Approximation parameters accounting for Coulomb and short range interactions that describe the calcium and magnesium aspartates and glutamates are given. The decrease in the chemical potential of the aspartates corresponds to the Hofmeister series: NaAsp Mg(Asp)(2) CaAsp. A strong interaction between amino acid and salt due to specific dispersion interactions in amino acid salt systems containing guanidinium based salt has been revealed that is in agreement with MD and half-empirical quantum-chemical calculations.
机译:将蒸气压渗透蒸气体施用于系统钙L-天冬氨酸((S) - 氨基丁酸钙盐)+水中的Ca-L-Asp(M(CA-L-ASP)= 0.01-1.02mol中心点kg (-1))和盐酸胍(盐酸甲脒)+钠L-天冬氨酸((S) - 氨基丁二酸钠盐)+水,改变GNDMCL和NA-L-ASP的摩尔(M(Na-L-ASP)) = 0.1,0.25,0.4,0.57mol中心点kg(-1)和m(gndmcl)= 0.1-1.1 mol中心点kg(-1)),在t = 298.15k和310.15k。来自蒸气压渗透术,活动已经计算出混合物Ca-L-ASP +水和Na-L-ASP + GNDMCL +水的相应渗透系数,两者都与不同物种的化学电位直接相关,从而与其Gibbs能量直接相关。从实验数据中获得平均摩洛尔离子活性系数,该数据与Pitzer方程有用,并且导出了对CA-L-ASP +水二进制系统的相应双相和三相相互作用参数。在水中Ca-L-ASP在水中需要与零不同的β((2))Pitzer参数,以随着浓度的增加而再现渗透系数降低。给出了描述钙和镁天冬氨酸和谷氨酸的库仑和短距离相互作用的平均球形近似参数。天冬氨酸化学势的降低对应于Hofmeister系列:NaAsp≫ Mg(ASP)(2)&崎岖。揭示了含有氨基酸盐系统的特异性分散相互作用的氨基酸和盐之间的强相互作用,这与MD和半经验量子化学计算一致。

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