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首页> 外文期刊>The Journal of Chemical Physics >Classification of the ejection mechanisms of charged macromolecules from liquid droplets
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Classification of the ejection mechanisms of charged macromolecules from liquid droplets

机译:液滴带电大分子喷射机理的分类

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摘要

The relation between the charge state of a macromolecule and its ejection mechanism from droplets is one of the important questions in electrospray ionization methods. In this article, effects of solvent-solute interaction on the manifestation of the charge induced instability in a droplet are examined. We studied the instabilities in a prototype system of a droplet comprised of charged poly(ethylene glycol) and methanol, acetonitrile, and water solvents. We observed instances of three, previously only conjectured, [S. Consta, J. Phys. Chem. B 114, 5263 (2010)10.1021/jp912119v] mechanisms of macroion ejection. The mechanism of ejection of charged macroion in methanol is reminiscent of "pearl" model in polymer physics. In acetonitrile droplets, the instability manifests through formation of solvent spines around the solvated macroion. In water, we find that the macroion is ejected from the droplet through contiguous extrusion of a part of the chain. The difference in the morphology of the instabilities is attributed to the interplay between forces arising from the macroion solvation energy and the surface energy of the droplet interface. For the contiguous extrusion of a charged macromolecule from a droplet, we demonstrate that the proposed mechanism leads to ejection of the macromolecule from droplets with sizes well below the Rayleigh limit. The ejected macromolecule may hold charge significantly higher than that suggested by prevailing theories. The simulations reveal new mechanisms of macroion evaporation that differ from conventional charge residue model and ion evaporation mechanisms.
机译:大分子的电荷状态与其从液滴的喷射机理之间的关系是电喷雾电离方法中的重要问题之一。在本文中,研究了溶剂-溶质相互作用对液滴中电荷诱导的不稳定性表现的影响。我们研究了由带电聚乙二醇,甲醇,乙腈和水溶剂组成的液滴原型系统中的不稳定性。我们观察到三个以前仅是推测的实例[S. Consta,J.Phys。化学B 114,5263(2010)10.1021 / jp912119v]宏观粒子弹出机制。甲醇中带电的大分子离子的喷射机理让人想起聚合物物理学中的“珍珠”模型。在乙腈液滴中,不稳定性通过在溶剂化的大分子离子周围形成溶剂刺而显现出来。在水中,我们发现大分子离子是通过连续挤压一部分链从液滴中喷出的。不稳定性形态上的差异归因于由大分子溶剂化能和液滴界面的表面能产生的力之间的相互作用。对于从液滴连续挤出带电大分子,我们证明了所提出的机理导致大分子从大小远低于瑞利极限的液滴中喷射出来。弹出的大分子可能持有的电荷明显高于流行理论所建议的电荷。仿真揭示了与传统的电荷残留模型和离子蒸发机制不同的大分子蒸发的新机制。

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