Sun Pan, Huang Kun, Liu Huizhou
CAS Key Laboratory of Green Process and Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, P. R. China.
Soft Matter. 2019 May 29;15(21):4346-4350. doi: 10.1039/c9sm00007k.
Understanding of the microcosmic essence of the competitive adsorption of different ions at liquid/liquid interfaces is of crucial importance for the elucidation of the unique chemical reactivities or selectivities of ions in numerous heterogeneous chemical processes. However, the knowledge of the microscopic mechanism behind the competitive adsorption of ions at the liquid/liquid interface is lacking. Herein, the competitive adsorption of various inorganic salt anions at organic-aqueous two-phase interfaces has been investigated as compared to that of the CrO42- ions by total internal reflection UV-visible (TIR-UV) spectroscopy since CrO42- ions are detectable by UV-visible spectroscopy and have a relatively poor interface propensity as compared to other chaotropic ions. Experimental results indicate that the interface propensities of different salt anions to the organic/aqueous phase interface follow the Hofmeister series. Molecular dynamics simulations further provided molecular-level evidence for role of the Hofmeister series of ions in the competitive adsorption of salt anions at organic-aqueous two-phase interfaces; the present study provided the first-hand experimental evidence demonstrating the occurrence of the Hofmeister series effect at the organic/aqueous two-phase interfaces, influencing the competitive adsorption of different salt ions; moreover, it is expected to offer a basis for the development of new strategies for the regulation of the chemical reactivity and selectivity of ions at organic/aqueous phase interfaces by introduction of other ions for competitive adsorption.
理解不同离子在液/液界面的竞争吸附微观本质,对于阐明众多非均相化学过程中离子独特的化学反应性或选择性至关重要。然而,目前仍缺乏对离子在液/液界面竞争吸附背后微观机制的认识。在此,通过全内反射紫外可见光谱(TIR-UV)研究了各种无机盐阴离子在有机-水两相界面的竞争吸附,并与CrO42-离子进行了比较,因为CrO42-离子可通过紫外可见光谱检测,且与其他离液序列离子相比,其界面倾向相对较差。实验结果表明,不同盐阴离子对有机/水相界面的界面倾向符合霍夫迈斯特序列。分子动力学模拟进一步提供了分子水平的证据,证明了霍夫迈斯特序列离子在盐阴离子在有机-水两相界面竞争吸附中的作用;本研究提供了第一手实验证据,证明了霍夫迈斯特序列效应在有机/水两相界面的发生,影响了不同盐离子的竞争吸附;此外,有望为通过引入其他离子进行竞争吸附来调控有机/水相界面离子化学反应性和选择性的新策略开发提供依据。