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ION SCATTERING AND RECOILING FROM LIQUID SURFACES

机译:离子从液体表面散射和反冲

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We have shown that ion beams can be used to probe the surface composition and molecular orientation of liquid surfaces. Time-of-flight analysis of the kinetic energy of scattered inert gas ions and recoil atoms ejected from the surface reveals the identity of atoms in the topmost atomic surface layer of the liquid. In this report we describe the first scattering/recoil experiments on surfaces of a liquid siloxane and glycerol using helium, neon and argon ions in the 2-3 keV energy range. Analysis of peak intensities as a function of experimental parameters can be used to infer average molecular orientations in the surface. Spectra from the liquid siloxane are similar to that reported by Bertrand et al. [J. Phys. Chem. 97, 131 788 (1993)] for the long-chain hydrocarbon hexatriacontane deposited as oriented solid films on Si wafers. Our data indicates that the siloxane backbone is effectively shielded by the attached hydrocarbon groups, and for incoming ions the molecule effectively resembles a hydrocarbon. Recent sum-frequency generation spectroscopy experiments [J. Phys. Chem. B 101, 4607 (1997)] suggest that a glycerol molecule in the liquid is, on average, oriented with the carbon backbone normal to the surface. Our data is consistent with this:result, but scattering/recoiling simulations are needed to definitively determine the orientation. (C) 1997 American Institute of Physics. [References: 15]
机译:我们已经表明,离子束可用于探测液体表面的表面组成和分子取向。对从表面喷射的惰性气体离子和反冲原子的动能进行飞行时间分析,揭示了液体最顶层原子表面层中的原子身份。在本报告中,我们描述了使用2-3 keV能量范围内的氦,氖和氩离子在液态硅氧烷和甘油表面进行的首次散射/反冲实验。作为实验参数的函数的峰强度分析可用于推断表面中的平均分子取向。液态硅氧烷的光谱与Bertrand等人报道的相似。 [J.物理化学97,131 788(1993)]作为长链烃六三aco烷以定向固体膜形式沉积在Si晶片上。我们的数据表明,硅氧烷主链被连接的烃基有效屏蔽,对于进入的离子,该分子有效地类似于烃。最近的和频产生光谱实验[J.物理化学B 101,4607(1997)]提出,液体中的甘油分子平均取向为垂直于表面的碳骨架。我们的数据与以下结果一致:结果,但是需要散射/回弹模拟来确定方向。 (C)1997美国物理研究所。 [参考:15]

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