Multi-material 3D Nanoprinting for Structures to Functional Micro/nanosystems

Y. Duan, Wenshuo Xie, Zhouping Yin, Y. Huang
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Abstract

Multi-material 3D fabrication at the nanoscale has been a long-sought goal in additive manufacturing, with great potential for the direct construction of functional micro/nanosystems rather than just arbitrary 3D structures. To achieve this goal, researchers have introduced several nanoscale 3D printing principles, explored various multi-material switching and combination strategies, and demonstrated their potential applications in 3D integrated circuits, optoelectronics, biological devices, micro/nanorobots, etc. Although some progress has been made, it is still at the primary stage and a serious breakthrough is needed to directly construct functional micro/nano systems. In this perspective, the development, current status and prospects of multi-material 3D nanoprinting are presented. We envision that this 3D printing will unlock innovative solutions and make significant contributions to various technologies and industries in the near future.
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从结构到功能性微/纳米系统的多材料三维纳米打印技术
纳米级多材料三维制造一直是增材制造领域孜孜以求的目标,它具有直接构建功能性微/纳米系统而非任意三维结构的巨大潜力。为了实现这一目标,研究人员引入了多种纳米级三维打印原理,探索了各种多材料切换和组合策略,并展示了它们在三维集成电路、光电子学、生物设备、微型/纳米机器人等方面的潜在应用。虽然已经取得了一些进展,但仍处于初级阶段,直接构建功能性微/纳米系统还需要重大突破。本视角介绍了多材料三维纳米打印的发展、现状和前景。我们预计,在不久的将来,这种三维打印技术将为各种技术和行业提供创新解决方案并做出重大贡献。
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