首页> 外文期刊>Chemical science >The ionic liquid–vacuum outer atomic surface: a low-energy ion scattering study
【24h】

The ionic liquid–vacuum outer atomic surface: a low-energy ion scattering study

机译:离子液体真空外原子表面:低能量离子散射研究

获取原文
           

摘要

We have identified elements present in the ionic liquid–vacuum outer atomic surface of 23 ionic liquids using high sensitivity low-energy ion scattering (LEIS), a very surface sensitive technique. We show that the probability of cationic heteroatoms being present at the ionic liquid–vacuum outer atomic surface is very low; we detected imidazolium nitrogen for only one of the 18 imidazolium based ionic liquids investigated, no nitrogen for the two ammonium based ionic liquids and a very small amount of phosphorus for two of the three phosphonium-based ionic liquids. We determine that the anion is always present at the ionic liquid–vacuum outer atomic surface, even for very large cations containing dodecyl alkyl chains or longer; these chains dominate the ionic liquid–vacuum outer atomic surface, but are not sufficiently densely packed to completely cover the anions. We demonstrate the presence of strong hydrogen bond acceptor adsorption sites at the ionic liquid–vacuum outer atomic surface. We demonstrate that the amount of ion present at the ionic liquid–vacuum outer atomic surface can be tuned by varying the size of the other ion; larger cations (or anions) occupy more of the ionic liquid–vacuum outer atomic surface, leaving less room for anions (or cations). By identifying elements present at the ionic liquid–vacuum outer atomic surface, conclusions can be drawn on the orientations of anions nearest the vacuum. We show that for five different anions there is a most probable ion orientation, but other anion orientations also exist, demonstrating the presence of multiple anion orientations. The imidazolium cations nearest to the vacuum also show similar multi-orientation behaviour. This variety of atoms present and therefore ion orientations is expected to be central to controlling surface reactivity. In addition, our results can be used to quantitatively validate simulations of the ionic liquid–vacuum surface at a molecular level. Overall, our studies, in combination with literature data from different techniques and simulations, provide a clear picture of ionic liquid–vacuum outer atomic surfaces.
机译:我们已经使用高灵敏度低能量离子散射(leis),非常表面敏感技术,鉴定了23个离子液体的离子液体 - 真空外原子表面中存在的元素。我们表明,存在于离子液体 - 真空外原子表面上存在的阳离子杂原子的概率非常低;我们检测到亚咪唑氮,仅针对研究的18个咪唑鎓离子液体中的一种,没有用于两种基于铵的离子液体的氮气,并且对于三种基于鏻的离子液体中的两个是非常少量的磷。我们确定阴离子始终存在于离子液体真空外原子表面,即使对于含有十二烷基烷基链或更长的非常大的阳离子;这些链占主导离子液体真空外原子表面,但不充分密集地填充以完全覆盖阴离子。我们证明了离子液体真空外原子表面的强氢键受吸附位点的存在。我们证明可以通过改变另一离子的尺寸来调谐离子液体真空外原子表面上存在的离子量;较大的阳离子(或阴离子)占据离子液体真空外原子表面的更多,留下较少的阴离子(或阳离子)的空间。通过鉴定在离子液体真空外原子表面处存在的元素,可以在最靠近真空的阴离子的方向上绘制结论。我们表明,对于五种不同的阴离子,存在最可能的离子取向,但也存在其他阴离子取向,证明存在多个阴离子取向。最靠近真空的咪唑鎓阳离子也显示出类似的多向行为。这种存在的各种原子,因此离子取向预计将是控制表面反应性的核心。此外,我们的结果可用于在分子水平定量地验证离子液体真空表面的模拟。总体而言,我们的研究与来自不同技术和模拟的文献数据相结合,提供了离子液体真空外原子表面的清晰图像。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号