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利用和频振动光谱和分子动力学模拟研究pH敏感型可切换二胺表面活性剂的自组装。

Investigating the self-assembly of pH-sensitive switchable diamine surfactant using sum frequency generation spectroscopy and molecular dynamics simulations.

作者信息

Ambagaspitiya Tharushi D, Garza Danielle John C, Zuercher Aoife, Asetre Cimatu Katherine Leslee

机构信息

Department of Chemistry and Biochemistry, Ohio University, 133 University Terrace, Chemistry Building, Athens, Ohio 45701-2979, USA.

出版信息

J Chem Phys. 2024 Oct 28;161(16). doi: 10.1063/5.0230410.

Abstract

The responses of the N-alkyl diamine groups to variations in pH affect their conformations and surface activities, making them relevant to applications relying on interfacial interactions, such as controlled emulsification and mineral flotation. An in-depth understanding of interfacial self-assembly is crucial. Herein, a molecular-level study was performed to investigate the adsorption and self-assembly of N-dodecylpropane-1,3-diamine (DPDA) at the air-water (A/W) interface using sum frequency generation (SFG) spectroscopy and molecular dynamics (MD) simulations. The SFG spectra of DPDA, acquired under three pH conditions, suggest that the protonation of the DPDA diamine group influences the alkyl chain arrangement at a varying degree at the A/W interface. Analysis of the di-cationic DPDA SFG spectrum at a low pH showed fewer gauche defects at low concentration, as indicated by the relatively higher intensity ratio (ICH3SS/ICH2SS) of 18.1 ± 0.6. The density profiles from MD simulations at different surface areas per molecule and pH conditions, showing varying degrees of packing, support the observation of gauche defects in SFG. With MD simulation, the radial distribution factor for di-cationic species has the highest probability of forming hydrogen bonds compared to mono-cationic and non-ionic species. These g(r) probability results conform with observations obtained from SFG spectroscopy, where we observed a strong hydrogen bond interaction at low pH conditions with di-cationic species, forming tetrahedrally arranged water molecules at the A/W interface. Overall, comprehensive insights will facilitate the visualization of alkyl diamines and their potential derivatives at the A/W interface, enabling a better understanding of their behavior across various applications.

摘要

N-烷基二胺基团对pH变化的响应会影响其构象和表面活性,使其与依赖界面相互作用的应用相关,如可控乳化和矿物浮选。深入了解界面自组装至关重要。在此,使用和频振动光谱(SFG)和分子动力学(MD)模拟进行了一项分子水平研究,以研究N-十二烷基丙烷-1,3-二胺(DPDA)在气-水(A/W)界面的吸附和自组装。在三种pH条件下获得的DPDA的SFG光谱表明,DPDA二胺基团的质子化在不同程度上影响了A/W界面处的烷基链排列。低pH下二阳离子DPDA的SFG光谱分析表明,在低浓度下gauche缺陷较少,相对较高的强度比(ICH3SS/ICH2SS)为18.1±0.6表明了这一点。不同分子表面积和pH条件下MD模拟的密度分布显示出不同程度的堆积,支持了SFG中gauche缺陷的观察结果。通过MD模拟,与单阳离子和非离子物种相比,二阳离子物种的径向分布因子形成氢键的概率最高。这些g(r)概率结果与从SFG光谱获得的观察结果一致,在该光谱中,我们观察到在低pH条件下二阳离子物种有很强的氢键相互作用,在A/W界面形成四面体排列的水分子。总体而言,全面的见解将有助于可视化烷基二胺及其潜在衍生物在A/W界面的情况,从而更好地理解它们在各种应用中的行为。

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