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用于响应性气-水界面的光开关表面活性剂:偶氮与芳基偶氮吡唑两亲物

Photo-Switchable Surfactants for Responsive Air-Water Interfaces: Azo versus Arylazopyrazole Amphiphiles.

作者信息

Schnurbus Marco, Campbell Richard A, Droste Jörn, Honnigfort Christian, Glikman Dana, Gutfreund Philipp, Hansen Michael Ryan, Braunschweig Björn

机构信息

Institute of Physical Chemistry, Westfälische Wilhelms-Universität Münster, Corrensstraße 28/30, 48149 Münster, Germany.

Center for Soft Nanoscience (SoN), Westfälische Wilhelms-Universität Münster, Busso-Peus-Straße 10, 48149 Münster, Germany.

出版信息

J Phys Chem B. 2020 Aug 6;124(31):6913-6923. doi: 10.1021/acs.jpcb.0c02848. Epub 2020 Jul 28.

Abstract

Arylazopyrazoles (AAPs) as substitutes for azobenzene derivatives have gained considerable attention due to their superior properties offering / photoisomerization with high yield. In order to compare and quantify their performance, azobenzene triethylammonium (Azo-TB) and arylazopyrazole triethylammonium (AAP-TB) bromides were synthesized and characterized in the bulk (water) using NMR and UV/Vis spectroscopy. At the air-water interface, complementary information from vibrational sum-frequency generation (SFG) spectroscopy and neutron reflectometry (NR) has revealed the effects of isomerization in great detail. In bulk water the photostationary states of >89% for / switching in both directions were very similar for the surfactants, while their interfacial behavior was substantially different. In particular, the surface excess Γ of the surfactants changed drastically between and isomers for AAP-TB (maximum change of Γ: 2.15 μmol/m); for Azo-TB, the change was only moderate (maximum change of Γ: 1.02 μmol/m). Analysis of SFG spectra revealed that strong nonresonant contributions that heterodyned the resonant vibrational bands were proportional to Γ, enabling the aromatic C-H band to be interpreted as an indicator for changes in the interfacial molecular order. Close comparison of Γ from NR with the SFG amplitude from the aromatic C-H stretch as a function of concentrations and / conformation revealed substantial molecular order changes for AAP-TB. In contrast, only Γ and not the molecular order varied for Azo-TB. These differences in interfacial properties are attributed to the molecular structure of the AAP center that enables favorable lateral interactions at the air-water interface, causing closed-packed interfacial layers and substantial changes during / photoisomerization.

摘要

芳基偶氮吡唑(AAPs)作为偶氮苯衍生物的替代品,因其具有高产率的光异构化等优异性能而备受关注。为了比较和量化它们的性能,合成了偶氮苯三乙铵(Azo-TB)和芳基偶氮吡唑三乙铵(AAP-TB)溴化物,并使用核磁共振(NMR)和紫外可见光谱(UV/Vis)在本体(水)中对其进行了表征。在空气-水界面,振动和频产生(SFG)光谱和中子反射率(NR)提供的补充信息详细揭示了异构化的影响。在本体水中,两种表面活性剂双向光开关的光稳态均>89%,非常相似,但其界面行为却有很大不同。特别是,对于AAP-TB,表面活性剂的表面过剩量Γ在顺式和反式异构体之间变化剧烈(Γ的最大变化为2.15 μmol/m²);对于Azo-TB,变化较为适中(Γ的最大变化为1.02 μmol/m²)。SFG光谱分析表明,使共振振动带产生外差的强非共振贡献与Γ成正比,使得芳香族C-H带可被解释为界面分子有序度变化的指标。将NR得到的Γ与芳香族C-H伸缩振动的SFG振幅随浓度和构象的变化进行仔细比较,发现AAP-TB存在显著的分子有序度变化。相比之下,Azo-TB仅Γ发生变化,分子有序度未变。这些界面性质的差异归因于AAP中心的分子结构,该结构在空气-水界面能够形成有利的横向相互作用,导致形成紧密堆积的界面层,并在光异构化过程中发生显著变化。

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