用于可拉伸电极和应变传感器应用的喷墨印刷swcnts薄膜

Taehoon Kim, J. Byun, Hyunsoo Song, Yongtaek Hong
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引用次数: 2

摘要

可拉伸电子是下一代电子应用中最具吸引力的研究领域之一,其中大多数器件需要在柔性和可弯曲变形条件下表现出稳定和良好的机械性能。为了实现可拉伸电极,“软金属”如金、银和铜已被广泛使用,但它们的机械性能相对较差,特别是在高度拉伸的情况下。因此,基于金属碳纳米管(CNT)的材料由于其优异的机械性能而被认为是这些条件下最合适的候选者。此外,由于碳纳米管材料的特性可以通过各种化学处理和结构改变而改变,因此相对容易控制电阻随外加应变变化的灵敏度是碳纳米管材料的另一个优点。当灵敏度控制在较大时,碳纳米管薄膜可以用作应变传感器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inkjet-printed SWCNT films for stretchable electrode and strain sensor applications
Stretchable electronics is one of the most attractive research areas for next-generation electronics application, where most parts of devices need to show stable and good mechanical properties under flexible and bendable deformation conditions. [n order to implement stretchable electrodes, "soft metal" such as gold, silver, and copper has been widely used, but they showed relatively poor mechanical properties, especially in highly stretched cases. Therefore, metallic carbon nano tube (CNT) based materials have been considered the most adequate candidate in such conditions due to their excellent mechanical properties. In addition, relative easiness of controlling sensitivity of resistance change with applied strain is another advantage of the CNT based materials because their characteristics can be changed by various chemical treatment and structural changes. When the sensitivity is controlled to be large, the CNT films can be used as strain sensors.
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