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在空气-水界面处对半氟化烷基偶氮苯的朗缪尔层中的机械性能进行光开关控制。

Photoswitching the mechanical properties in Langmuir layers of semifluorinated alkyl-azobenzenes at the air-water interface.

作者信息

Theodoratou Antigoni, Jonas Ulrich, Loppinet Benoit, Geue Thomas, Stangenberg René, Li Dan, Berger Rüdiger, Vlassopoulos Dimitris

机构信息

Foundation for Research and Technology Hellas (FORTH), Institute of Electronic Structure and Laser, 71110 Heraklion, Greece and University of Crete, Department of Materials Science and Technology, 71003 Heraklion, Greece.

Foundation for Research and Technology Hellas (FORTH), Institute of Electronic Structure and Laser, 71110 Heraklion, Greece and University of Siegen, Macromolecular Chemistry, Department of Chemistry and Biology, 57076 Siegen, Germany.

出版信息

Phys Chem Chem Phys. 2015 Nov 21;17(43):28844-52. doi: 10.1039/c5cp04242a.

Abstract

Semifluorinated alkyl-azobenzene derivatives (SFAB) can form stable Langmuir layers at the air-water interface. These systems combine the amphiphobic character of semifluorinated alkyl units as structure-directing motifs with photochromic behavior based on the well-known reversible cis-trans isomerization upon irradiation with UV and visible light. Herein, we report our investigations of the structural and dynamic tunability of these SFAB layers at the air-water interface in response to an external light stimulus. The monolayer structures and properties of 4-(heptadecafluorooctyl)phenyldiazene (F8-azo-H8) and bis(4-octylphenyl)diazene (H8-azo-H8) were studied by neutron reflectivity, surface pressure-area isotherms with compression-expansion cycles, and interfacial rheology. We find that UV irradiation reversibly influences the packing behavior of the azobenzene molecules and interpret this as a transition from organized layer structures with the main axis of the molecule vertically oriented in the trans form to random packing of the cis isomer. Interestingly, this trans-cis isomerization leads to an increase in surface pressure, which is accompanied by a decrease in viscoelastic moduli. These results suggest ways of tailoring the properties of responsive fluid interfaces.

摘要

半氟化烷基偶氮苯衍生物(SFAB)可在空气-水界面形成稳定的朗缪尔层。这些体系将半氟化烷基单元的两亲疏水性作为结构导向基序,与基于紫外线和可见光照射下众所周知的可逆顺反异构化的光致变色行为相结合。在此,我们报告了我们对这些SFAB层在空气-水界面响应外部光刺激时的结构和动态可调性的研究。通过中子反射率、具有压缩-膨胀循环的表面压力-面积等温线以及界面流变学研究了4-(十七氟辛基)苯基二氮烯(F8-偶氮-H8)和双(4-辛基苯基)二氮烯(H8-偶氮-H8)的单层结构和性质。我们发现紫外线照射可逆地影响偶氮苯分子的堆积行为,并将此解释为从分子主轴以反式垂直取向的有序层结构到顺式异构体的随机堆积的转变。有趣的是,这种反-顺异构化导致表面压力增加,同时粘弹性模量降低。这些结果提出了定制响应性流体界面性质的方法。

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