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首页> 外文期刊>Journal of Chemical and Engineering Data: the ACS Journal for Data >Volumetric, Viscometric, and H-1 NMR Studies on Caffeine, Theophylline, and Theobromine in Aqueous Solutions of MgCl2 at Temperatures T=(288.15 to 318.15) K and at Pressure p =101.3 kPa
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Volumetric, Viscometric, and H-1 NMR Studies on Caffeine, Theophylline, and Theobromine in Aqueous Solutions of MgCl2 at Temperatures T=(288.15 to 318.15) K and at Pressure p =101.3 kPa

机译:在温度T =(288.15至318.15)K和压力P = 101.3kPa的咖啡因,茶碱和H-1 NMR在MgCl 2水溶液中的咖啡因,茶碱和Thobromine的研究。

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摘要

Apparent molar volumes (V-2,V-phi) and viscosity B-coefficients for xanthine drugs (caffeine, theophylline, and theobromine) in aqueous (0.09999-0.99989) mol.kg(-1) MgCl2 solutions have been determined from measured densities rho and viscosities eta, respectively at T = (288.15 to 318.15) K and at pressure p = 101.3 kPa. These studies indicate the decrease in solubilization of xanthine drugs with increasing ionic strengths of MgCl2 solutions. The results have also been interpreted in terms of structure making/breaking ability of solutes. Spectroscopic studies also support that hydrophilic-ionic interactions are greater at lower concentrations of MgCl2, which descend and finally become weaker at higher concentrations of MgCl2. This type of behavior may also be understood in terms of a large dehydration effect.
机译:在水性(0.09999-0.9989)Mol.kg(-1)MgCl 2溶液中,镁药物(咖啡因,茶碱和机球甘氨酸)的表观摩尔体积(V-2,V-PHI)和粘度B系数已从测量的密度确定 rho和粘度Eta,分别在t =(288.15至318.15)k和压力下p = 101.3kpa。 这些研究表明,随着MgCl2溶液的增加,倍染黄嘌呤药物溶解的降低。 结果也被解释为溶质的结构制造/破碎能力。 光谱研究还支持亲水 - 离子相互作用在较低浓度的MgCl 2下较大,下降并最终在较高浓度的MgCl 2下变弱。 在大脱水效应方面也可以理解这种类型的行为。

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