材料科学
激光烧蚀
基质(水族馆)
数码产品
雕刻
激光器
纳米技术
导电体
涂层
光电子学
复合材料
光学
化学
物理化学
地质学
物理
海洋学
作者
Christopher H. Dreimol,Huizhang Guo,Maximilian Ritter,Tobias Keplinger,Yong Ding,Roman Günther,Erik Poloni,Ingo Burgert,Guido Panzarasa
标识
DOI:10.1038/s41467-022-31283-7
摘要
Ecologically friendly wood electronics will help alleviating the shortcomings of state-of-art cellulose-based "green electronics". Here we introduce iron-catalyzed laser-induced graphitization (IC-LIG) as an innovative approach for engraving large-scale electrically conductive structures on wood with very high quality and efficiency, overcoming the limitations of conventional LIG including high ablation, thermal damages, need for multiple lasing steps, use of fire retardants and inert atmospheres. An aqueous bio-based coating, inspired by historical iron-gall ink, protects wood from laser ablation and thermal damage while promoting efficient graphitization and smoothening substrate irregularities. Large-scale (100 cm2), highly conductive (≥2500 S m-1) and homogeneous surface areas are engraved single-step in ambient atmosphere with a conventional CO2 laser, even on very thin (∼450 µm) wood veneers. We demonstrate the validity of our approach by turning wood into highly durable strain sensors, flexible electrodes, capacitive touch panels and an electroluminescent LIG-based device.
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