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Two-Laser-Guided Three-Dimensional Microfabrication and Processing in a Flexible Polymer Matrix

机译:柔性聚合物基体中的二维激光指导的三维微细加工

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摘要

With the increase in demand for high-performance, compact and portable devices, flexible materials are attracting considerable attention because they provide low-profile and light-weight products and often good performance. Three-dimensional (3D) processing causes a steady and effective improvement in the capabilities of flexible materials. In addition, 3D nanoperiodic/microperiodic structures that exhibit specific optical properties are the expected next-generation optical devices. The development of a novel 3D processing technique for flexible materials is viewed as the key to advance several emerging technologies such as flexible dense microelectronics, photonics, and micro-electromechanical systems (MEMS). These developments will aid in addressing a lot of challenges. Direct laser writing is a powerful method that allows one to design and fabricate materials in complex 3D shapes without requiring expensive tooling or complicated multistep processes.
机译:随着对高性能,紧凑和便携式设备的需求的增加,柔性材料吸引了相当大的关注,因为它们提供了低调,轻巧的产品,并且通常具有良好的性能。三维(3D)处理使柔性材料的性能得到稳定有效的提高。另外,表现出特定光学性质的3D纳米周期/微周期结构是预期的下一代光学装置。柔性材料的新型3D处理技术的开发被视为推进多种新兴技术(如柔性致密微电子,光子学和微机电系统(MEMS))的关键。这些发展将有助于解决许多挑战。直接激光写入是一种强大的方法,可以使人们以复杂的3D形状设计和制造材料,而无需昂贵的工具或复杂的多步骤过程。

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