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通过合理的自下而上设计策略实现几何可重构的三维介观结构和电磁器件。

Geometrically reconfigurable 3D mesostructures and electromagnetic devices through a rational bottom-up design strategy.

作者信息

Bai Ke, Cheng Xu, Xue Zhaoguo, Song Honglie, Sang Lei, Zhang Fan, Liu Fei, Luo Xiang, Huang Wen, Huang Yonggang, Zhang Yihui

机构信息

AML, Department of Engineering Mechanics, Tsinghua University, Beijing 100084, P.R. China.

School of Microelectronics, Hefei University of Technology, Anhui 230009, P.R. China.

出版信息

Sci Adv. 2020 Jul 22;6(30):eabb7417. doi: 10.1126/sciadv.abb7417. eCollection 2020 Jul.

Abstract

Microelectronic devices with reconfigurable three-dimensional (3D) microarchitecture that can be repetitively switched among different geometrical and/or working states have promising applications in widespread areas. Traditional approaches usually rely on stimulated deformations of active materials under external electric/magnetic fields, which could potentially introduce parasitic side effects and lower device performances. Development of a rational strategy that allows access to high-performance 3D microdevices with multiple stable geometric configurations remains challenging. We introduce a mechanically guided scheme to build geometrically reconfigurable 3D mesostructures through a bottom-up design strategy based on a class of elementary reconfigurable structures with the simplest ribbon geometries. Quantitative mechanics modeling of the structural reconfigurability allows for the development of phase diagrams and design maps. Demonstrations of ~30 reconfigurable mesostructures with diverse geometric topologies and characteristic dimensions illustrate the versatile applicability. The multimode nature enables customized distinct beamforming and discrete beam scanning using a single antenna capable of on-demand reconfiguration.

摘要

具有可重构三维(3D)微架构的微电子器件,能够在不同几何形状和/或工作状态之间重复切换,在广泛领域具有广阔的应用前景。传统方法通常依赖于活性材料在外部电场/磁场下的受激变形,这可能会潜在地引入寄生副作用并降低器件性能。开发一种合理的策略以获得具有多种稳定几何构型的高性能3D微器件仍然具有挑战性。我们引入一种机械引导方案,通过基于一类具有最简单带状几何形状的基本可重构结构的自下而上设计策略,构建几何可重构的3D介观结构。结构可重构性的定量力学建模有助于绘制相图和设计图。展示了约30种具有不同几何拓扑和特征尺寸的可重构介观结构,说明了其广泛的适用性。这种多模特性使得使用单个能够按需重构的天线进行定制的独特波束形成和离散波束扫描成为可能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db1b/7439572/2592c71cf5c0/abb7417-F1.jpg

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