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Wood-Based Flexible Electronics

机译:基于木材的柔性电子

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摘要

Next-generation electronics (e.g., substrate and conductor) need to be high performance, multifunctional, and environmentally friendly. Here, we report the creation of a fully wood-based flexible electronics circuit meeting these requirements, where the substrate, a strong, flexible and transparent wood film, is printed with a lignin-derived carbon nanofibers conductive ink. The wood film fabrication involves extensive removal of lignin and hemicellulose to tailor the nanostructure of the material followed by collapsing of the cell walls. This process preserves the original alignment of the cellulose nanofibers and promotes their binding. The film is flexible, yet strong in fiber direction with a Young's modulus and a tensile strength of 49.9 GPa and 469.9 MPa, respectively. Furthermore, a sustainable and bio-based conductive ink is formulated with lignin-derived carbon nanofibers. The bio-based ink is printed on transparent wood film, and a strain sensor application of the printed circuit is demonstrated. Combining the transparent wood film with the conductive ink produces environmental friendly and sustainable wood-based electronics for potential applications such as flexible circuits and sensors. Moreover, we envision the potential for a scalable and continuous fabrication process as well as end-of-life recyclability.
机译:下一代电子(例如,基板和导体)需要高性能,多功能和环保。在这里,我们报告了创建了满足这些要求的全木制柔性电子电路,其中基板,强,柔性且透明的木膜,用木质素衍生的碳纳米纤维导电油墨印刷。木膜制造涉及广泛去除木质素和半纤维素以定制材料的纳米结构,然后折叠细胞壁。该过程保留了纤维素纳米纤维的原始对准并促进其结合。该薄膜具有柔性,但光纤方向强,杨氏模量分别为49.9GPa和469.9MPa的拉伸强度。此外,可持续和生物基导电油墨用木质素衍生的碳纳米纤维配制。生物基油墨印在透明木膜上,并对印刷电路的应变传感器施加。将透明木膜与导电油墨组合为诸如柔性电路和传感器等潜在应用产生环保和可持续的木材电子产品。此外,我们设想可扩展和连续的制造过程以及寿命结束可回收性的潜力。

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