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基于单离子导体的 1 伏驱动超快速聚合物致动器。

One-volt-driven superfast polymer actuators based on single-ion conductors.

机构信息

Department of Chemistry, Pohang University of Science and Technology (POSTECH), Pohang 790-784, Korea.

Functional Composites Department, Korea Institute of Materials Science, Changwon 642-831, Korea.

出版信息

Nat Commun. 2016 Nov 18;7:13576. doi: 10.1038/ncomms13576.

Abstract

The key challenges in the advancement of actuator technologies related to artificial muscles include fast-response time, low operation voltages and durability. Although several researchers have tackled these challenges over the last few decades, no breakthrough has been made. Here we describe a platform for the development of soft actuators that moves a few millimetres under 1 V in air, with a superfast response time of tens of milliseconds. An essential component of this actuator is the single-ion-conducting polymers that contain well-defined ionic domains through the introduction of zwitterions; this achieved an exceptionally high dielectric constant of 76 and a 300-fold enhancement in ionic conductivity. Moreover, the actuator demonstrated long-term durability, with negligible changes in the actuator stroke over 20,000 cycles in air. Owing to its low-power consumption (only 4 mW), we believe that this actuator could pave the way for cutting-edge biomimetic technologies in the future.

摘要

在推进与人工肌肉相关的致动器技术方面,面临的主要挑战包括快速响应时间、低操作电压和耐用性。尽管过去几十年来有几位研究人员已经着手解决这些挑战,但尚未取得突破。在这里,我们描述了一种用于开发软致动器的平台,该致动器在空气中移动几毫米只需 1V 以下的电压,响应时间超快,仅需数十毫秒。该致动器的一个重要组成部分是单离子导电聚合物,通过引入两性离子形成具有明确离子域的聚合物;这实现了非常高的介电常数 76 和离子电导率提高 300 倍。此外,该致动器表现出长期耐用性,在空气中经过 20,000 次循环后,致动器行程几乎没有变化。由于其低功耗(仅 4mW),我们相信这种致动器可能为未来的先进仿生技术铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39cd/5120218/6168c581f7c6/ncomms13576-f1.jpg

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