材料科学
石墨烯
背景(考古学)
辐照
相对湿度
激光器
光电子学
电导率
湿度
紫外线
纳米技术
复合材料
化学工程
光学
工程类
物理化学
物理
古生物学
核物理学
化学
热力学
生物
作者
Bohdan Kulyk,Beatriz F. R. Silva,Alexandre F. Carvalho,Paula Barbosa,Ana V. Girão,Jonas Deuermeier,A.J.S. Fernandes,F. M. Figueiredo,Elvira Fortunato,F.M. Costa
标识
DOI:10.1002/admt.202101311
摘要
Abstract Laser‐induced graphene (LIG) produced by irradiation of paper (paper‐LIG)holds substantial promise for flexible devices. This article presents paper‐LIG humidity and temperature sensors fabricated by single‐step irradiation of common filter paper with a pulsed UV laser (355 nm). The influence of the process parameters on the conversion of cellulose fibers into LIG is discussed based on the resulting morphology, structure, conductivity, and chemical composition, revealing a distinct barrier to transformation and a propagation behavior not seen under CO 2 laser irradiation. The obtained material is constituted by a porous, electrically conductive network of fibers. The paper‐LIG relative humidity (RH) and temperature sensors with sensitivities of up to 1.3 × 10 −3 %RH −1 and ‐ 2.8 × 10 −3 ° C −1 , respectively, are examined in terms of their linearity, reproducibility, and response time. A detailed discussion on the response mechanism is presented in the context of literature, pointing towards the absorption of water molecules in the interlayer spacing of graphene as the main reason for the increase in resistance with RH. Additionally, a contribution from variable range hopping along the ab plane of graphene at high RH is suggested. These results demonstrate the potential of paper‐LIG for low‐cost, sustainable, and environmentally friendly sensing.
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