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A Protein‐Based Water‐Insoluble and Bendable Polymer with Ionic Conductivity: A Roadmap for Flexible and Green Electronics

机译:具有离子导电性的基于蛋白质的水不溶性和可弯曲聚合物:柔性电子产品和绿色电子产品的路线图

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摘要

Proteins present an ecofriendly alternative to many of the synthetic components currently used in electronics. They can therefore in combination with flexibility and electroactivity uncover a range of new opportunities in the field of flexible and green electronics. In this study, silk‐based ionic conductors are turned into stable thin films by embedding them with 2D nanoclay platelets. More specifically, this material is utilized to develop a flexible and ecofriendly motion‐sensitive touchscreen device. The display‐like sensor can readily transmit light, is easy to recycle and can monitor the motion of almost any part of the human body. It also displays a significantly lower sheet resistance during bending and stretching regimes than the values typically reported for conventional metallic‐based conductors, and remains fully operational after mechanical endurance testing. Moreover, it can operate at high frequencies in the kilohertz (kHz) range under both normal and bending modes. Notably, our new technology is available through a simple one‐step manufacturing technique and can therefore easily be extended to large‐scale fabrication of electronic devices.
机译:蛋白质是目前电子产品中许多合成成分的环保替代品。因此,它们可以与灵活性和电活性相结合,在柔性和绿色电子领域中发现一系列新机会。在这项研究中,通过将基于丝绸的离子导体嵌入2D纳米粘土血小板中,可以将它们转变为稳定的薄膜。更具体地说,这种材料用于开发一种灵活,环保的运动敏感型触摸屏设备。类似于显示器的传感器可以很容易地透射光,易于回收利用,并且可以监视人体几乎任何部位的运动。与传统的基于金属的导体相比,它在弯曲和拉伸过程中的薄层电阻也显着降低,并且在机械耐力测试后仍能完全正常工作。此外,在正常模式和弯曲模式下,它都可以在千赫兹(kHz)范围内的高频下运行。值得注意的是,我们的新技术可以通过简单的一步制造技术获得,因此可以轻松地扩展到电子设备的大规模制造。

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