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PNAS Plus: Surface structure evolution in a homologous series of ionic liquids

机译:PNAS Plus:一系列同源离子液体的表面结构演变

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摘要

Interfaces of room temperature ionic liquids (RTILs) are important for both applications and basic science and are therefore intensely studied. However, the evolution of their interface structure with the cation’s alkyl chain length n from Coulomb to van der Waals interaction domination has not yet been studied for even a single broad homologous RTIL series. We present here such a study of the liquid–air interface for n = 2to 22, using angstrom-resolution X-ray methods. For n  6, a typical “simple liquid” monotonic surface-normal electron density profile ρe(z) is obtained, like those of water and organic solvents. For n  6, increasingly more pronounced nanoscale self-segregation of the molecules’ charged moieties and apolar chains yields surface layering with alternating regions of headgroups and chains. The layering decays into the bulk over a few, to a few tens, of nanometers. The layering periods and decay lengths, their linear n dependence, and slopes are discussed within two models, one with partial-chain interdigitation and the other with liquid-like chains. No surface-parallel long-range order is found within the surface layer. For n = 22, a different surface phase is observed above melting. Our results also impact general liquid-phase issues like supramolecular self-aggregation and bulk–surface structure relations.
机译:室温离子液体(RTIL)的界面对于应用和基础科学均很重要,因此受到了广泛的研究。但是,即使是单个宽同源RTIL系列,也尚未研究它们的界面结构与阳离子的烷基链长度n从库仑到范德华相互作用的支配关系。我们在这里使用埃分辨率X射线方法研究n = 2至22的液体-空气界面。对于n <6,可以获得类似于水和有机溶剂的典型``简单液体''单调表面法线电子密度分布ρe(z)。对于n> 6,分子带电部分和非极性链的纳米级自分离越来越明显,产生带有头基和链的交替区域的表面分层。该层在几纳米到几十纳米的范围内逐渐腐烂。在两个模型中讨论了分层周期和衰减长度,线性n相关性和斜率,其中一个模型具有部分链叉指,另一个模型具有液体链。在表面层内未发现平行于表面的远程顺序。当n = 22时,在熔化上方观察到不同的表面相。我们的结果还影响了一般的液相问题,如超分子自聚集和体表结构关系。

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