Zafarani-Moattar Mohammed Taghi, Shekaari Hemayat, Asadollahi Soheila
Department of Physical Chemistry, University of Tabriz, Tabriz, Iran.
Sci Rep. 2023 Oct 18;13(1):17780. doi: 10.1038/s41598-023-43906-0.
In this work, to evaluate solute-solute, solute-solvent and phase separation in aqueous systems containing {betaine + poly ethylene glycol dimethyl ether with molar mass 250 g mol (PEGDME)}, {betaine + KPO} and {betaine + KHPO}, first water activity measurements were made at 298.15 K and atmospheric pressure using the isopiestic technique. The water iso-activity lines of these three systems were obtained which have positive deviations from the semi-ideal solutions. This suggests that betaine-polymer and betaine-KPO or betaine-KHPO interactions are unfavorable; and these mixtures may form aqueous two-phase systems (ATPSs) at certain concentrations. Indeed the formation of ATPSs was observed experimentally. Then, osmotic coefficient values were calculated using the obtained water activity data; and, using the polynomial method the solute activity coefficients were determined. Using these activity coefficients, the transfer Gibbs energy ([Formula: see text]) values were calculated for the transfer of betaine from aqueous binary to ternary systems consisting polymer (PEGDME250) or salts (KPO and KHPO). The obtained positive [Formula: see text] values again indicated that there is unfavorable interaction between betaine and these solutes. Finally, the volumetric and ultrasonic studies were made on these systems to examine the evidence for the nature of interactions between betaine and the studied salts or polymer.
在本研究中,为了评估含有{甜菜碱 + 摩尔质量为250 g/mol的聚乙二醇二甲醚(PEGDME)}、{甜菜碱 + KPO}和{甜菜碱 + KHPO}的水体系中的溶质 - 溶质、溶质 - 溶剂和相分离情况,首先在298.15 K和大气压下使用等压技术进行了水活度测量。得到了这三个体系的水等活度线,它们与半理想溶液存在正偏差。这表明甜菜碱 - 聚合物以及甜菜碱 - KPO或甜菜碱 - KHPO之间的相互作用是不利的;并且这些混合物在某些浓度下可能形成双水相体系(ATPSs)。实际上,通过实验观察到了ATPSs的形成。然后,利用获得的水活度数据计算渗透系数值;并且,使用多项式方法确定溶质活度系数。利用这些活度系数,计算了甜菜碱从二元水体系转移到包含聚合物(PEGDME250)或盐(KPO和KHPO)的三元体系的转移吉布斯自由能([公式:见正文])值。所获得的正[公式:见正文]值再次表明甜菜碱与这些溶质之间存在不利的相互作用。最后,对这些体系进行了体积和超声研究,以检验甜菜碱与所研究的盐或聚合物之间相互作用性质的证据。