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首页> 外文期刊>Scientific reports. >Laser Scanning Holographic Lithography for Flexible 3D Fabrication of Multi-Scale Integrated Nano-structures and Optical Biosensors
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Laser Scanning Holographic Lithography for Flexible 3D Fabrication of Multi-Scale Integrated Nano-structures and Optical Biosensors

机译:激光扫描全息光刻技术,用于多尺度集成纳米结构和光学生物传感器的灵活3D制造。

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摘要

Three-dimensional (3D) periodic nanostructures underpin a promising research direction on the frontiers of nanoscience and technology to generate advanced materials for exploiting novel photonic crystal (PC) and nanofluidic functionalities. However, formation of uniform and defect-free 3D periodic structures over large areas that can further integrate into multifunctional devices has remained a major challenge. Here, we introduce a laser scanning holographic method for 3D exposure in thick photoresist that combines the unique advantages of large area 3D holographic interference lithography (HIL) with the flexible patterning of laser direct writing to form both micro- and nano-structures in a single exposure step. Phase mask interference patterns accumulated over multiple overlapping scans are shown to stitch seamlessly and form uniform 3D nanostructure with beam size scaled to small 200?μm diameter. In this way, laser scanning is presented as a facile means to embed 3D PC structure within microfluidic channels for integration into an optofluidic lab-on-chip, demonstrating a new laser HIL writing approach for creating multi-scale integrated microsystems.
机译:三维(3D)周期性纳米结构为纳米科学和技术前沿的有前途的研究方向奠定了基础,以产生用于开发新型光子晶体(PC)和纳米流体功能的先进材料。然而,在大面积上形成均匀且无缺陷的3D周期性结构以进一步集成到多功能设备中仍然是一个重大挑战。在这里,我们介绍一种用于在厚光刻胶中进行3D曝光的激光扫描全息方法,该方法将大面积3D全息干涉光刻(HIL)的独特优势与激光直接写入的柔性图案结合在一起,从而在单个结构中形成微结构和纳米结构曝光步骤。图中显示了在多次重叠扫描中累积的相位掩模干涉图样可以无缝缝合,并形成均匀的3D纳米结构,光束尺寸缩小到200μm的小直径。以此方式,激光扫描被呈现为将3D PC结构嵌入微流通道中以集成到光流芯片实验室中的便捷手段,展示了一种用于创建多尺度集成微系统的新型激光HIL写入方法。

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