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Ultraviolet Patterned Calixarene-Derived Supramolecular Gels and Films with Spatially Resolved Mechanical and Fluorescent Properties

机译:紫外线图案化的钙喹啉 - 衍生的超分子凝胶和具有空间分离的机械和荧光特性的薄膜

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摘要

Supramolecular assemblies have in the past been considered mechanically weak and in most cases unable to withstand their own weight. Calixarene-derived networks can, however, provide robust supramolecular gels. Incorporating a photoreactive stilbene moiety, we show that the aggregation state of the material can be tuned by heating and UV exposure in order to control the mechanical as well as the fluorescent properties. Regulating the extent of heating to control the proportion of H-aggregates and J-aggregates and further cross-linking of H-aggregates by control over UV exposure allows for adjustable photopatterning of the fluorescence as well as the material stiffness in the range from similar to 400 to 450 kPa. We expect this straightforward supramolecular system will be suitable for advanced prototyping in applications where modulus and shape are important design criteria.
机译:过去的超分子组件已被视为机械弱,并且在大多数情况下无法承受自己的重量。 然而,Calixarene衍生的网络可以提供强大的超分子凝胶。 掺入光反应性斯蒂尔贝烯部分,我们表明可以通过加热和UV曝光来调节材料的聚集状态,以控制机械以及荧光特性。 调节加热程度以控制H-聚集体和J-聚集体的比例以及通过对UV曝光的控制进一步交联H-聚集体,允许可调节的荧光的光检查以及从类似的范围内的材料刚度。 400至450 kPa。 我们预计这种直接的超分子系统将适用于模量和形状是重要设计标准的应用中的先进原型。

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