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3D 打印固态导电离子弹性体:触觉应用的通用构建模块

3D Printed, Solid-State Conductive Ionoelastomer as a Generic Building Block for Tactile Applications.

机构信息

Department of Mechanical Engineering, City University of Hong Kong, Hong Kong, 999077, China.

出版信息

Adv Mater. 2022 Jan;34(2):e2105996. doi: 10.1002/adma.202105996. Epub 2021 Nov 19.

Abstract

Shaping soft and conductive materials into preferential architectures via 3D printing is highly attractive for numerous applications ranging from tactile devices to bioelectronics. A landmark type of soft and conductive materials is hydrogels/ionogels. However, 3D-printed hydrogels/ionogels still suffer from a fundamental bottleneck: limited stability in their electrical-mechanical properties caused by the evaporation and leakage of liquid within hydrogels/ionogels. Although photocurable liquid-free ion-conducting elastomers can circumvent these limitations, the associated photocurable process is cumbersome and hence the printing quality is relatively poor. Herein, a fast photocurable, solid-state conductive ionoelastomer (SCIE) is developed that enables high-resolution 3D printing of arbitrary architectures. The printed building blocks possess many promising features over the conventional ion-conducting materials, including high resolution architectures (even ≈50 µm overhanging lattices), good Young's modulus (up to ≈6.2 MPa), and stretchability (fracture strain of ≈292%), excellent conductivity tolerance in a wide range of temperatures (from -30 to 80 °C), as well as fine elasticity and antifatigue ability even after 10 000 loading-unloading cycles. It is further demonstrated that the printed building blocks can be programmed into 3D flexible tactile sensors such as gyroid-based piezoresistive sensor and gap-based capacitive sensor, both of which exhibit several times higher in sensitivity than their bulky counterparts.

摘要

通过 3D 打印将软质和导电材料塑造成优先结构,对于从触觉设备到生物电子学的各种应用都极具吸引力。水凝胶/离聚物是一种具有里程碑意义的软质和导电材料。然而,3D 打印水凝胶/离聚物仍然存在一个根本的瓶颈:水凝胶/离聚物中的液体蒸发和泄漏导致其电机械性能的稳定性有限。尽管无液体可光固化的导电流体弹性体可以避免这些限制,但相关的光固化过程繁琐,因此打印质量相对较差。在此,开发了一种快速光固化的固态导电离聚物弹性体 (SCIE),可实现任意结构的高分辨率 3D 打印。打印的构建块具有许多优于传统导电流体材料的特性,包括高分辨率结构(甚至在≈50 µm 悬空晶格上)、良好的杨氏模量(高达≈6.2 MPa)和拉伸性(≈292%的断裂应变)、在很宽的温度范围内(-30 至 80°C)具有出色的电导率耐受性,以及在经过 10000 次加载-卸载循环后仍具有良好的弹性和抗疲劳能力。进一步证明,打印的构建块可以编程为 3D 柔性触觉传感器,例如基于胞元的压阻传感器和基于间隙的电容传感器,它们的灵敏度都比其庞大的同类产品高几倍。

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