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用于信息显示、存储和加密的双面体群超材料

Janus Swarm Metamaterials for Information Display, Memory, and Encryption.

作者信息

Zhang Zenghao, Raymond Jeffery E, Lahann Joerg, Pena-Francesch Abdon

机构信息

Department of Materials Science and Engineering, University of Michigan, Ann Arbor, MI, 48109, USA.

Department of Chemical Engineering, University of Michigan, Ann Arbor, MI, 48109, USA.

出版信息

Adv Mater. 2024 Nov;36(45):e2406149. doi: 10.1002/adma.202406149. Epub 2024 Sep 16.

Abstract

Metamaterials are emerging as an unconventional platform to perform computing abstractions in physical systems by processing environmental stimuli into information. While computation functions have been demonstrated in mechanical systems, they rely on compliant mechanisms to achieve predefined states, which impose inherent design restrictions that limit their miniaturization, deployment, reconfigurability, and functionality. Here, a metamaterial system is described based on responsive magnetoactive Janus particle (MAJP) swarms with multiple programmable functions. MAJPs are designed with tunable structure and properties in mind, that is, encoded swarming behavior and fully reversible switching mechanisms, to enable programmable dynamic display, non-volatile and semi-volatile memory, Boolean logic, and information encryption functions in soft, wearable devices. MAJPs and their unique swarming behavior open new functions for the design of multifunctional and reconfigurable display devices, and constitute a promising building block to develop the next generation of soft physical computing devices, with growing applications in security, defense, anti-counterfeiting, camouflage, soft robotics, and human-robot interaction.

摘要

超材料正在成为一种非常规平台,通过将环境刺激处理为信息,在物理系统中执行计算抽象。虽然计算功能已在机械系统中得到证明,但它们依赖柔顺机构来实现预定义状态,这带来了固有的设计限制,限制了它们的小型化、部署、可重构性和功能。在此,描述了一种基于具有多种可编程功能的响应性磁活性 Janus 粒子(MAJP)群的超材料系统。MAJP 的设计考虑了可调节的结构和特性,即编码的群体行为和完全可逆的切换机制,以在柔软的可穿戴设备中实现可编程动态显示、非易失性和半易失性存储器、布尔逻辑以及信息加密功能。MAJP 及其独特的群体行为为多功能和可重构显示设备的设计开启了新功能,并构成了开发下一代软物理计算设备的有前途的构建模块,在安全、国防、防伪、伪装、软机器人技术和人机交互等领域的应用日益广泛。

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