首页> 外文期刊>The Journal of Chemical Physics >Molecular dynamics and metadynamics simulations of electrosprayed water nanodroplets including sodium bis(2-ethylhexyl) sulfosuccinate micelles
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Molecular dynamics and metadynamics simulations of electrosprayed water nanodroplets including sodium bis(2-ethylhexyl) sulfosuccinate micelles

机译:电喷雾水纳米电池的分子动力学和元动力学模拟,包括双(2-乙基己基)磺琥珀酸钠胶束

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The behavior of aqueous solutions of sodium bis(2-ethylhexyl) sulfosuccinate (AOTNa) under conditions of electrospray ionization (ESI) has been investigated by molecular dynamics (MD) and well-tempered metadynamics (WTM) simulations at 300 K and 400 K. We have examined water droplets with initial fixed numbers of water molecules (1000) and AOT(-) anions (100), and with sodium cations in the range of 70-130. At 300 K, all charged droplets show the water evaporation rate increasing with the absolute value of the initial droplet charge state (Z), accompanied by ejection of an increasing number of solvated sodium ions or by expulsion of AOT(-) anions depending on the sign of Z and by fragmentation in the case of high vertical bar Z vertical bar. At 400 K, the water evaporation becomes more rapid and the fission process more extensive. In all cases, the AOTNa molecules, arranged as a direct micelle inside the aqueous system, undergo a rapid inversion in vacuo so that the hydrophilic heads and sodium ions surrounded by water molecules move toward the droplet interior. At the end of the 100-ns MD simulations, some water molecules remain within the aggregates at both temperatures. The subsequent metadynamics simulations accelerate the droplet evolution and show that all systems become anhydrous, in agreement with the experimental results of ESI mass spectrometry. This complete water loss is accompanied by sodium counterion emission for positively charged aggregates at 300 K. The analysis shows how the temperature and droplet charge state affect the populations of the generated surfactant aggregates, providing information potentially useful in designing future ESI experimental conditions. Published by AIP Publishing.
机译:通过300 k和400k的分子动力学(MD)和升高的Metadynamics(WTM)模拟研究了双(2-乙基己基)磺基琥珀酸钠(AOTNA)在电喷雾电离(ESI)条件下的水溶液的行为。我们已经检查了初始固定数量的水分子(1000)和AOT( - )阴离子(100)的水滴,以及70-130范围内的钠阳离子。在300k时,所有带电液滴显示出用初始液滴充电状态(z)的绝对值增加的水蒸发速率,伴随着越来越多的溶剂化钠离子或根据AOT( - )阴离子的喷射高垂直条Z垂直条的情况下Z的迹象和碎片。在400 k下,水蒸发变得更加快速,裂变过程更加广泛。在所有情况下,AOTNA分子在水性系统内部布置为直接胶束,真空经历快速反转,使得被水分子包围的亲水性头和钠离子朝向液滴内部移动。在100-ns MD模拟结束时,一些水分子在两个温度下保留在聚集体内。随后的元动力学模拟加速了液滴的演化,并表明所有系统都与ESI质谱的实验结果一致地变得无水。这种完全的水损失伴随着300k的带正电荷的聚集体的钠抗衡离子发射。分析表明,温度和液滴电荷状态如何影响所产生的表面活性剂聚集体的群体,提供在设计未来ESI实验条件方面可能有用的信息。通过AIP发布发布。

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