Planar Polymer Optical Waveguide with Metal‐Organic Framework Coating for Carbon Dioxide Sensing

Lei Zheng, N. Keppler, Huajun Zhang, Peter Behrens, B. Roth
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引用次数: 13

Abstract

An easily fabricated gas sensor based on planar polymer optical waveguides with an integrated zeolite imidazole framework‐8 (ZIF‐8) thin film is presented for carbon dioxide detection and sensing. The planar optical waveguides are made of polymethylmethacrylate and fabricated by hot embossing, which makes it flexible and cost‐efficient. Thin ZIF‐8 films are uniformly grown on the waveguides surface through a simple solution method, which is crucial for the envisioned production of metal organic framework‐based sensing devices on a large scale. Experimental results show that the produced optical elements exhibit a sensitivity of ≈2.5 μW/5 vol% toward carbon dioxide (CO2) with very rapid response time (≈6 s) and excellent reversibility of adsorption and desorption of the gas molecules. The demonstrated planar polymer sensing devices provide the potential to develop flexible on‐chip gas sensors in an inexpensive and reproducible way.
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用于二氧化碳传感的金属-有机框架涂层平面聚合物光波导
提出了一种基于平面聚合物光波导和集成沸石咪唑框架- 8 (ZIF - 8)薄膜的易于制造的气体传感器,用于二氧化碳的检测和传感。平面光波导由聚甲基丙烯酸甲酯制成,通过热压成型,使其具有灵活性和成本效益。通过一种简单的溶液方法,在波导表面均匀地生长出薄的ZIF‐8薄膜,这对于大规模生产基于金属有机框架的传感器件至关重要。实验结果表明,所制备的光学元件对二氧化碳(CO2)的灵敏度为≈2.5 μW/5 vol%,响应时间为≈6 s,对气体分子的吸附和解吸具有良好的可逆性。所展示的平面聚合物传感装置提供了以廉价和可重复的方式开发柔性片上气体传感器的潜力。
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