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Self-grafting carbon nanotubes on polymers for stretchable electronics

机译:用于可拉伸电子器件的聚合物上的自拍碳纳米管

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摘要

Elementary bidimensional circuitry made of single-wall carbon-nanotube-based conductors, self-grafted on different polymer films, is accomplished in an attempt to develop a simple technology for flexible and stretchable electronic devices. Unlike in other studies of polymer-carbon nanotube composites, no chemical functionalization of single-wall carbon nanotubes is necessary for stable grafting onto several polymeric surfaces, suggesting viable and cheap fabrication technologies for stretchable microdevices. Electrical characterization of both unstretched and strongly stretched conductors is provided, while an insight on the mechanisms of strong adhesion to the polymer is obtained by scanning electron microscopy of the surface composite. As a first example of technological application, the electrical functionality of a carbonnanotube-based 6-sensor (electrode) grid was demonstrated by recording of subdural electrocorticograms in freely moving rats over approximately three months. The results are very promising and may serve as a basis for future work targeting clinical applications.
机译:通过单壁碳 - 纳米管 - 基于单壁碳纳米管的导体制成的基本偏压电路是在不同的聚合物薄膜上进行自移植,以试图为柔性和可伸缩的电子设备开发简单的技术。与聚合物 - 碳纳米管复合材料的其他研究不同,没有单壁碳纳米管的化学官能化对于稳定地嫁接到几种聚合物表面上是必需的,这表明可伸缩微生物的可行性和廉价的制造技术。提供了不伸出和强拉伸导体的电学表征,同时通过扫描表面复合材料的电子显微镜来获得对对聚合物的强粘合机制的洞察。作为技术应用的第一示例,通过在大约三个月内自由移动的大鼠在自由移动的大鼠中记录硬囊电压图来证明基于碳纳诺管的6传感器(电极)网格的电功能。结果非常有前途,可作为未来工作靶向临床应用的基础。

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