首页> 外文期刊>Journal of Molecular Liquids >Solute-solvent and solute-solute interactions of ibuprofen in aqueous and in aqueous solutions of urea, sodium salicylate and nicotinamide by volumetric and interferometric techniques
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Solute-solvent and solute-solute interactions of ibuprofen in aqueous and in aqueous solutions of urea, sodium salicylate and nicotinamide by volumetric and interferometric techniques

机译:通过体积和干涉技术通过体积和干涉技术在尿素水溶液中和含水溶液中的溶剂和溶质 - 溶质和溶质溶质溶质相互作用,水溶液和烟酰胺的水溶液

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摘要

Solubility of drugs in aqueous media is a real issue for scientists and a lot of work is going on to resolve the issue. The same is the case for ibuprofen, which is a derivative of propionic acid and belongs to the NSAIDs family having low solubility in pure water. Therefore, its solubility has been investigated in the presence of hydrotropic agents like urea, sodium salicylate and nicotinamide at four different temperatures ranging from 298.15 K to 313.15 K at 5 K interval. The values of density (d) and sound velocity (U) have been measured in aqueous ibuprofen and ibuprofen + aqueous solution of urea, sodium salicylate and nicotinamide separately in five different concentrations. Densities of these solutions were measured at the above said four temperatures. The ultrasonic velocities (U) have been measured at 298.15 K only. Experimental density data have been used to estimate various important parameters, such as apparent molar volume(V-phi), limiting apparent molar volume(V-phi(0)), apparent molar expansibility (4) and limiting apparent molar expansibility (E-phi(0)). Further, from the ultrasonic data, different thermo-acoustical parameters, such as isentropic compressibility (K-s), apparent molar isentropic compressibility (K-s,K-phi) and acoustic impedance (Z), have been evaluated, and discussed in the light of solute-solute and solute-solvent interactions. Solubility parameters were found to be useful for selecting a suitable hydrotropic agent in drug dissolution. (C) 2017 Elsevier B.V. All rights reserved.
机译:药物在含水介质中的溶解度是科学家的真正问题,并进行了很多工作来解决这个问题。对于布洛芬的情况也是如此,这是丙酸的衍生物,属于在纯水中具有低溶解度的NSAIDS家族。因此,在四种不同温度下在5K间隔的四种不同温度下,在尿素,水杨酸钠和烟酰胺等四种不同温度下,在水辐射剂存在下进行了溶解度。含有408.15k至313.15k。密度(d)和声速(u)的值已在水性布洛芬和尿素,水杨酸钠和烟酰胺的水溶液中以五种不同浓度分别测量。在上述所述四个温度下测量这些溶液的密度。超声速度(U)仅在298.15 k下测量。实验密度数据已被用于估计各种重要参数,例如表观摩尔体积(V-PHI),限制表观摩尔体积(V-PHI(0)),表观摩尔可膨胀性(4)并限制表观摩尔可扩展性(E- phi(0))。此外,从超声波数据,已经评估了不同的热声学参数,例如等熵压缩性(Ks),表观摩尔等熵压缩性(Ks,K-Phi)和声阻抗(z),并根据溶质讨论 - 旋转和溶质 - 溶剂相互作用。发现溶解度参数可用于选择药物溶解中的合适的水质刺激剂。 (c)2017年Elsevier B.V.保留所有权利。

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