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使用液态金属的可拉伸和柔软电子产品。

Stretchable and Soft Electronics using Liquid Metals.

机构信息

Department of Chemical and Biomolecular Engineering, NC State University, Raleigh, NC, 27607, USA.

出版信息

Adv Mater. 2017 Jul;29(27). doi: 10.1002/adma.201606425. Epub 2017 Apr 18.

Abstract

The use of liquid metals based on gallium for soft and stretchable electronics is discussed. This emerging class of electronics is motivated, in part, by the new opportunities that arise from devices that have mechanical properties similar to those encountered in the human experience, such as skin, tissue, textiles, and clothing. These types of electronics (e.g., wearable or implantable electronics, sensors for soft robotics, e-skin) must operate during deformation. Liquid metals are compelling materials for these applications because, in principle, they are infinitely deformable while retaining metallic conductivity. Liquid metals have been used for stretchable wires and interconnects, reconfigurable antennas, soft sensors, self-healing circuits, and conformal electrodes. In contrast to Hg, liquid metals based on gallium have low toxicity and essentially no vapor pressure and are therefore considered safe to handle. Whereas most liquids bead up to minimize surface energy, the presence of a surface oxide on these metals makes it possible to pattern them into useful shapes using a variety of techniques, including fluidic injection and 3D printing. In addition to forming excellent conductors, these metals can be used actively to form memory devices, sensors, and diodes that are completely built from soft materials. The properties of these materials, their applications within soft and stretchable electronics, and future opportunities and challenges are considered.

摘要

讨论了基于镓的液态金属在柔软和可拉伸电子产品中的应用。这一新兴类别的电子产品的出现部分是受到了具有类似人类体验中机械性能的设备所带来的新机遇的推动,例如皮肤、组织、纺织品和衣物。这些类型的电子产品(例如,可穿戴或可植入电子产品、用于软机器人的传感器、电子皮肤)必须在变形过程中运行。液态金属是这些应用的理想材料,因为原则上它们在保持金属导电性的同时可以无限变形。液态金属已被用于可拉伸电线和互连、可重构天线、软传感器、自修复电路和共形电极。与汞相比,基于镓的液态金属毒性低,基本上没有蒸气压,因此被认为易于处理。虽然大多数液体都会聚集以最小化表面能,但这些金属表面存在氧化物,使得可以使用多种技术将其图案化成有用的形状,包括流体喷射和 3D 打印。除了形成出色的导体之外,这些金属还可以被主动用于形成完全由软材料构建的记忆装置、传感器和二极管。本文考虑了这些材料的性质、它们在柔软和可拉伸电子产品中的应用,以及未来的机遇和挑战。

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