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溴和氯在涂有阳离子表面活性剂的表面上的竞争分离:离子和溶剂深度分布的直接测量

Competing Segregation of Br and Cl to a Surface Coated with a Cationic Surfactant: Direct Measurements of Ion and Solvent Depth Profiles.

作者信息

Zhao Xianyuan, Nathanson Gilbert M, Andersson Gunther G

机构信息

Department of Chemistry, University of Wisconsin-Madison, Madison, Wisconsin 53706, United States.

Centre for Nanoscale Science and Technology, Flinders University, Adelaide, South Australia 5001, Australia.

出版信息

J Phys Chem A. 2020 Dec 31;124(52):11102-11110. doi: 10.1021/acs.jpca.0c08859. Epub 2020 Dec 16.

Abstract

Ion-surface scattering experiments can be used to measure elemental depth profiles on the angstrom scale in complex liquid mixtures. We employ NICISS (neutral impact collision ion scattering spectroscopy) to measure depth profiles of dissolved ions and solvent in liquid glycerol containing the cationic surfactant tetrahexylammonium bromide (THA/Br) at 0.013 M and mixtures of NaBr + NaCl at 0.4 M total concentration. The experiments reveal that Br outcompetes Cl in its attraction to surface THA, and that THA segregates more extensively when more Br ions are present. Intriguingly, the depths spanned by THA, Br, and Cl ions generally increase with Br bulk concentration, expanding from ∼10 to ∼25 Å for both Br and Cl depth profiles. This broadening likely occurs because of an increasing pileup of THA ions in a multilayer region that spreads the halide ions over a wider depth. The experiments indicate that cationic surfactants enhance Br and Cl concentrations in the surface region far beyond their bulk-phase values, making solutions coated with these surfactants potentially more reactive toward gases that can oxidize the halide ions.

摘要

离子-表面散射实验可用于测量复杂液体混合物中埃尺度的元素深度分布。我们采用中性撞击碰撞离子散射光谱法(NICISS)来测量含有0.013 M阳离子表面活性剂四己基溴化铵(THA/Br)的液态甘油以及总浓度为0.4 M的NaBr + NaCl混合物中溶解离子和溶剂的深度分布。实验表明,在对表面THA的吸引力方面,Br比Cl更具竞争力,并且当存在更多Br离子时,THA的偏析更为广泛。有趣的是,THA、Br和Cl离子所跨越的深度通常随Br本体浓度的增加而增加,Br和Cl深度分布的范围从约10 Å扩展到约25 Å。这种展宽可能是由于多层区域中THA离子堆积增加,使卤离子在更宽的深度上分布所致。实验表明,阳离子表面活性剂可使表面区域的Br和Cl浓度远高于其本体相值,使得涂覆有这些表面活性剂的溶液对可氧化卤离子的气体可能具有更高的反应活性。

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