材料科学
超分子化学
纳米技术
离子液体
表征(材料科学)
分子
液晶
自组装
制作
离子键合
模块化设计
化学工程
有机化学
化学
光电子学
计算机科学
催化作用
离子
医学
操作系统
工程类
病理
替代医学
作者
Abid Hussain,Ana Semeano,Susana Palma,Ana Sofia Pina,José Almeida,Bárbara F. Medrado,Ana Pádua,Ana Luı́sa Carvalho,Madalena Dionı́sio,Rosamaria W. C. Li,Hugo Gambôa,Rein V. Ulijn,Jonas Gruber,Ana Cecília A. Roque
标识
DOI:10.1002/adfm.201700803
摘要
The cooperative assembly of biopolymers and small molecules can yield functional materials with precisely tunable properties. Here, the fabrication, characterization, and use of multicomponent hybrid gels as selective gas sensors are reported. The gels are composed of liquid crystal droplets self‐assembled in the presence of ionic liquids, which further coassemble with biopolymers to form stable matrices. Each individual component can be varied and acts cooperatively to tune gels' structure and function. The unique molecular environment in hybrid gels is explored for supramolecular recognition of volatile compounds. Gels with distinct compositions are used as optical and electrical gas sensors, yielding a combinatorial response conceptually mimicking olfactory biological systems, and tested to distinguish volatile organic compounds and to quantify ethanol in automotive fuel. The gel response is rapid, reversible, and reproducible. These robust, versatile, modular, pliant electro‐optical soft materials possess new possibilities in sensing triggered by chemical and physical stimuli.
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