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2D Optical Gratings Based on Hexagonal Voids on Transparent Elastomeric Substrate

机译:透明弹性体基底上基于六边形空隙的二维光学光栅

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摘要

A chromatic vectorial strain sensor constituted by hexagonal voids on transparent elastomeric substrate has been successfully fabricated via soft colloidal lithography. Initially a highly ordered 1.6 microns polystyrene spheres monolayer colloidal crystal has been realized by wedge-shaped cell method and used as a suitable mold to replicate the periodic structure on a polydimethylsiloxane sheet. The replicated 2D array is characterized by high periodicity and regularity over a large area, as evidenced by morphological and optical properties obtained by means of SEM, absorption and reflectance spectroscopy. In particular, the optical features of the nanostructured elastomer have been investigated in respect to uniaxial deformation up to 10% of its initial length, demonstrating a linear, tunable and reversible response, with a sensitivity of 4.5 ± 0.1 nm/%. Finally, it has been demonstrated that the specific geometrical configuration allows determining simultaneously the vectorial strain-stress information in the x and y directions.
机译:通过软胶体光刻技术已经成功地制造了由透明弹性体基底上的六边形空隙构成的彩色矢量应变传感器。最初,已经通过楔形电池方法实现了高度有序的1.6微米聚苯乙烯球单层胶体晶体,并用作复制聚二甲基硅氧烷片上周期性结构的合适模具。复制的2D阵列的特点是在大面积上具有高周期性和规律性,这可以通过SEM,吸收和反射光谱学获得的形态和光学特性来证明。特别地,已经针对纳米结构弹性体的高达其初始长度的10%的单轴变形进行了光学特性的研究,证明了线性,可调和可逆的响应,灵敏度为4.5±0.1 nm /%。最后,已经证明,特定的几何构造允许同时确定x和y方向上的矢量应变应力信息。

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