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Directional Superficial Photofluidization for Deterministic Shaping of Complex 3D Architectures

机译:定向表面光流化,用于确定复杂3D建筑的形状

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摘要

The fabrication of micro- and nanostructures is one of the cornerstones of current materials science and technology. There is a strong interest in processing methods capable of manufacturing engineered complex structures on a large area. A method that is gaining a growing attention in this context is based on surface reshaping of photosensitive materials, such as certain azobenzene derivatives by way of a process of light-induced mass migration, also described as "athermal photofluidization". Here, we apply this method to prestructured substrate, converting simple periodic structures initially patterned only in two dimensions into complex-shaped three-dimensional (3D) structures by a single processing step over a large area. The optical variables of the irradiating beam are used to gain unprecedented deterministic control on the resulting 3D architectures. We also provide some initial demonstrations of the potential application of this novel shaping method, including unidirectional wetting surfaces and micro- and nanoscaled fluidic channel manufactured with it.
机译:微米和纳米结构的制造是当前材料科学和技术的基石之一。能够在大面积上制造工程复杂结构的加工方法引起了人们极大的兴趣。在这种情况下,越来越受到关注的方法是基于光敏材料例如某些偶氮苯衍生物的光敏材料的表面整形,该方法是通过光诱导的质量迁移过程,也称为“非热光流化”。在这里,我们将这种方法应用于预结构化的基板,通过大面积上的单个处理步骤,将最初仅在二维上图案化的简单周期性结构转换为复杂形状的三维(3D)结构。辐射束的光学变量用于对所得3D架构进行空前的确定性控制。我们还提供了这种新颖成型方法的潜在应用的初步证明,包括单向润湿表面以及用其制造的微米级和纳米级流体通道。

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