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纳米材料及其在仿生可穿戴电子产品中的应用。

Nanomaterials and their applications on bio-inspired wearable electronics.

机构信息

Collaborative Innovation Center of Advanced Microstructures, School of Electronic Science and Engineering, Nanjing University, Nanjing 210093, People's Republic of China.

出版信息

Nanotechnology. 2021 Sep 1;32(47). doi: 10.1088/1361-6528/abe6c7.

Abstract

Wearable electronics featuring conformal attachment, sensitive perception and intellectual signal processing have made significant progress in recent years. However, when compared with living organisms, artificial sensory devices showed undeniable bulky shape, poor adaptability, and large energy consumption. To make up for the deficiencies, biological examples provide inspirations of novel designs and practical applications. In the field of biomimetics, nanomaterials from nanoparticles to layered two-dimensional materials are actively involved due to their outstanding physicochemical properties and nanoscale configurability. This review focuses on nanomaterials related to wearable electronics through bioinspired approaches on three different levels, interfacial packaging, sensory structure, and signal processing, which comprehensively guided recent progress of wearable devices in leveraging both nanomaterial superiorities and biorealistic functionalities. In addition, opinions on potential development trend are proposed aiming at implementing bioinspired electronics in multifunctional portable sensors, health monitoring, and intelligent prosthetics.

摘要

近年来,具有贴合附着、敏感感知和智能信号处理功能的可穿戴电子产品取得了显著进展。然而,与生物体相比,人工感知设备具有不可否认的庞大形状、较差的适应性和高能耗等缺点。为了弥补这些不足,生物实例为新型设计和实际应用提供了灵感。在仿生学领域,由于具有出色的物理化学性质和纳米级可变性,从纳米颗粒到层状二维材料的纳米材料都被积极应用。本综述通过三个不同层面的生物启发方法(界面封装、传感结构和信号处理),重点关注与可穿戴电子产品相关的纳米材料,全面指导了可穿戴设备在利用纳米材料优势和生物逼真功能方面的最新进展。此外,还针对多功能便携式传感器、健康监测和智能义肢中实现生物启发型电子产品的潜在发展趋势提出了意见。

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