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首页> 外文期刊>Chemical science >Unexpected monolayer-to-bilayer transition of arylazopyrazole surfactants facilitates superior photo-control of fluid interfaces and colloids
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Unexpected monolayer-to-bilayer transition of arylazopyrazole surfactants facilitates superior photo-control of fluid interfaces and colloids

机译:芳基吡唑表面活性剂的意外的单层 - 双层过渡促进了流体界面和胶体的优质光控制

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摘要

Interfaces that can change their chemistry on demand have huge potential for applications and are prerequisites for responsive or adaptive materials. We report on the performance of a newly designed n -butyl-arylazopyrazole butyl sulfonate (butyl-AAP-C _(4) S) surfactant that can change its structure at the air–water interface by E / Z photo-isomerization in an unprecedented way. Large and reversible changes in surface tension (Δ γ = 27 mN m ~(?1) ) and surface excess (Δ Γ > 2.9 μmol m ~(?2) ) demonstrate superior performance of the butyl-AAP-C _(4) S amphiphile to that of existing ionic surfactants. Neutron reflectometry and vibrational sum-frequency generation spectroscopy reveal that these large changes are caused by an unexpected monolayer-to-bilayer transition. This exceptional behavior is further shown to have dramatic consequences at larger length scales as highlighted by applications like the light-triggered collapse of aqueous foam which is tuned from high (>1 h) to low (<10 min) stabilities and light-actuated particle motion via Marangoni flows.
机译:可以根据需要改变化学性的界面具有巨大的应用潜力,并且是响应或自适应材料的先决条件。我们报告了新设计的N-丁基 - 芳基吡唑丁磺酸丁酯(丁基-AAP-C _(4)S)表面活性剂的性能,其可以在前所未有的情况下通过E / Z光异构化改变其在空气界面处的结构办法。表面张力的大和可逆变化(Δγ= 27mN m〜(α1))和表面过量(Δγ>2.9μmolm〜(Δ2))表明丁基-AAP-C _(4)的优异性能S两亲对现有离子表面活性剂的两亲。中子反射仪和振动和频生成光谱显示,这些大变化是由意外的单层到双层过渡引起的。进一步示出了这种特殊行为在更大的长度尺度下具有巨大的后果,如含水泡沫的光触发塌陷的应用,它们从高(> 1小时)调谐到低(<10分钟)稳定性和光致动颗粒通过Marangoni的动作。

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