Song Kewei, Cui Yue, Tao Tiannan, Meng Xiangyi, Sone Michinari, Yoshino Masahiro, Umezu Shinjiro, Sato Hirotaka
Graduate School of Creative Science and Engineering, Department of Modern Mechanical Engineering, Waseda University, 3-4-1 Okubo, Shinjuku-ku, Tokyo169-8555, Japan.
Research and Development Division, Yoshino Denka Kogyo, Inc., Yoshikawa342-0008, Japan.
ACS Appl Mater Interfaces. 2022 Oct 19;14(41):46896-46911. doi: 10.1021/acsami.2c10617. Epub 2022 Oct 6.
Constructing precise metal patterns on complex three-dimensional (3D) plastic parts allows the fabrication of functional devices for advanced applications. However, it is currently expensive and requires complex processes. This study demonstrates a process for the fabrication of 3D metal-plastic composite structures with arbitrarily complex shapes. A light-cured resin is modified to prepare the active precursor allowing subsequent electroless plating (ELP). A multimaterial digital light processing 3D printer was newly developed to fabricate the parts containing regions made of either standard resin or active precursor nested within each other. Selective 3D ELP processing of such parts provided various metal-plastic composite parts having complicated hollow structures with specific topological relationships with the resolution of 40 μm. Using this technique, 3D devices that cannot be manufactured by traditional methods are possible, and metal patterns can be produced inside plastic parts as a means of further miniaturizing electronics. The proposed method can also generate metal coatings exhibiting improved adhesion of metal to substrate. Finally, several sensors composed of different functional materials and specific metal patterns were designed and fabricated. The present results demonstrate the viability of the proposed method and suggest potential applications in the fields of 3D electronics, wearable devices, and sensors.
在复杂的三维(3D)塑料部件上构建精确的金属图案,能够制造出用于先进应用的功能性器件。然而,目前这一过程成本高昂且需要复杂的工艺。本研究展示了一种制造具有任意复杂形状的3D金属 - 塑料复合结构的工艺。对光固化树脂进行改性,以制备活性前驱体,从而实现后续的化学镀(ELP)。新开发了一种多材料数字光处理3D打印机,用于制造包含由标准树脂或相互嵌套的活性前驱体制成的区域的部件。对这类部件进行选择性3D ELP处理,可提供各种具有复杂空心结构且与特定拓扑关系的金属 - 塑料复合部件,分辨率达40μm。利用该技术,可以制造出传统方法无法制造的3D器件,并且可以在塑料部件内部制作金属图案,作为进一步缩小电子产品尺寸的一种手段。所提出的方法还可以生成金属与基材之间附着力增强的金属涂层。最后,设计并制造了几种由不同功能材料和特定金属图案组成的传感器。目前的结果证明了所提方法的可行性,并表明其在3D电子、可穿戴设备和传感器领域的潜在应用。