材料科学
聚对苯二甲酸乙二醇酯
制作
纳米技术
薄膜
环境友好型
聚苯胺
织物
聚乙烯
聚合物
复合材料
光电子学
生物
医学
病理
聚合
替代医学
生态学
作者
Weiwei Wu,Bin Wang,Meital Segev‐Bar,Wei Dou,Fang Niu,Yehu David Horev,Yunfeng Deng,Marian Plotkin,Tan‐Phat Huynh,Raneen Jeries,Han Zhu,Alaa Garaa,Shifaa' Badarneh,Linfeng Chen,Mingliang Du,Wenwen Hu,Hossam Haick
标识
DOI:10.1002/adfm.201703147
摘要
Abstract Multifunctional flexible sensors that are sensitive to different physical and chemical stimuli but remain unaffected by any mechanical deformation and/or changes still present a challenge in the implementation of flexible devices in real‐world conditions. This challenge is greatly intensified by the need for an eco‐friendly fabrication technique suitable for mass production. A new eco‐friendly and scalable fabrication approach is reported for obtaining thin and transparent multifunctional sensors with regulated electrical conductivity and tunable band‐gap. A thin (≈190 nm thickness) freestanding sensing film with up to 4 inch diameter is demonstrated. Integration of the freestanding films with different substrates, such as polyethylene terephthalate substrates, silk textile, commercial polyethylene thin film, and human skin, is also described. These multifunctional sensors can detect and distinguish between different stimuli, including pressure, temperature, and volatile organic compounds. All the sensing properties explored are stable under different bending/strain states.
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