Simple and cost-effective method of highly conductive and elastic carbon nanotube/polydimethylsiloxane composite for wearable electronics

材料科学 碳纳米管 聚二甲基硅氧烷 数码产品 柔性电子器件 纳米技术 弹性体 可穿戴技术 可伸缩电子设备 纳米复合材料 制作 复合材料 可穿戴计算机 计算机科学 电气工程 嵌入式系统 病理 替代医学 工程类 医学
作者
Jeong Hun Kim,Ji‐Young Hwang,Ha Ryeon Hwang,Han Seop Kim,Joong Hoon Lee,Jae-Won Seo,Ueon Sang Shin,Sang‐Hoon Lee
出处
期刊:Scientific Reports [Nature Portfolio]
卷期号:8 (1) 被引量:241
标识
DOI:10.1038/s41598-017-18209-w
摘要

The development of various flexible and stretchable materials has attracted interest for promising applications in biomedical engineering and electronics industries. This interest in wearable electronics, stretchable circuits, and flexible displays has created a demand for stable, easily manufactured, and cheap materials. However, the construction of flexible and elastic electronics, on which commercial electronic components can be mounted through simple and cost-effective processing, remains challenging. We have developed a nanocomposite of carbon nanotubes (CNTs) and polydimethylsiloxane (PDMS) elastomer. To achieve uniform distributions of CNTs within the polymer, an optimized dispersion process was developed using isopropyl alcohol (IPA) and methyl-terminated PDMS in combination with ultrasonication. After vaporizing the IPA, various shapes and sizes can be easily created with the nanocomposite, depending on the mold. The material provides high flexibility, elasticity, and electrical conductivity without requiring a sandwich structure. It is also biocompatible and mechanically stable, as demonstrated by cytotoxicity assays and cyclic strain tests (over 10,000 times). We demonstrate the potential for the healthcare field through strain sensor, flexible electric circuits, and biopotential measurements such as EEG, ECG, and EMG. This simple and cost-effective fabrication method for CNT/PDMS composites provides a promising process and material for various applications of wearable electronics.

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