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Direct fabrication of polymer-metal microstructures for micro coils

机译:直接制造用于微线圈的聚合物-金属微结构

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A two-photon stereolithgraphy process is an effective method to fabricate 3D polymer microstructures. However, additional functionality, such as electrical conductivity, must be realized to allow them to be used in functional micro-devices. Electrical conductivity is a fundamental requirement for transferring signals and powering microsystems. We report a method for the direct fabrication of complex 3D polymer-metal microstructures. Patterning a hybrid material (a polymer and a metal coatable polymer) in chosen regions is achieved by a two-photon stereolithography process using a dual-stage scanning system. Selective metallization of the metal coatable polymer structure is performed through silver deposition by electroless plating. This process can produce arbitrary 3D polymer-metal hybrid microstructures with high resolution. In this paper, a 3D micro coil structure with an arbitrary shape is demonstrated. The fabricated 3D micro coil is operated at 25.4 GHz, which is useful for compact wireless communication devices, wireless power transmission, and small antennas.
机译:两光子立体光刻工艺是制造3D聚合物微结构的有效方法。然而,必须实现诸如导电性之类的附加功能,以允许将它们用于功能性微型设备中。电导率是传输信号和为微系统供电的基本要求。我们报告了一种直接制造复杂的3D聚合物-金属微结构的方法。通过使用双级扫描系统的双光子立体光刻工艺,可以在选定区域中对混合材料(聚合物和可金属涂覆的聚合物)进行图案化。可金属涂覆的聚合物结构的选择性金属化是通过化学镀的银沉积来进行的。此过程可以产生具有高分辨率的任意3D聚合物-金属杂化微结构。在本文中,对具有任意形状的3D微线圈结构进行了说明。制成的3D微型线圈工作在25.4 GHz的频率,对于紧凑型无线通信设备,无线电力传输和小型天线很有用。

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