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Metal–Organic Framework‐Surface‐Enhanced Infrared Absorption Platform Enables Simultaneous On‐Chip Sensing of Greenhouse Gases

机译:金属 - 有机框架 - 表面增强的红外吸收平台使得能够同时进行温室气体的芯片感测

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摘要

Simultaneous on‐chip sensing of multiple greenhouse gases in a complex gas environment is highly desirable in industry, agriculture, and meteorology, but remains challenging due to their ultralow concentrations and mutual interference. Porous microstructure and extremely high surface areas in metal–organic frameworks (MOFs) provide both excellent adsorption selectivity and high gases affinity for multigas sensing. Herein, it is described that integrating MOFs into a multiresonant surface‐enhanced infrared absorption (SEIRA) platform can overcome the shortcomings of poor selectivity in multigas sensing and enable simultaneous on‐chip sensing of greenhouse gases with ultralow concentrations. The strategy leverages the near‐field intensity enhancement (over 1500‐fold) of multiresonant SEIRA technique and the outstanding gas selectivity and affinity of MOFs. It is experimentally demonstrated that the MOF–SEIRA platform achieves simultaneous on‐chip sensing of CO2 and CH4 with fast response time (<60 s), high accuracy (CO2: 1.1%, CH4: 0.4%), small footprint (100 × 100 µm2), and excellent linearity in wide concentration range (0–2.5 × 104 ppm). Additionally, the excellent scalability to detect more gases is explored. This work opens up exciting possibilities for the implementation of all‐in‐one, real‐time, and on‐chip multigas detection as well as provides a valuable toolkit for greenhouse gas sensing applications.
机译:在复杂的气体环境中同时进行多种温室气体的芯片感测是在工业,农业和气象中的高望值,而是由于其超级浓度和相互干扰而仍然挑战。金属 - 有机骨架(MOF)中的多孔微观结构和极高的表面积为多消毒感测提供了优异的吸附选择性和高气体亲和力。这里,描述将MOF集成到多阵容的表面增强的红外吸收(SEIRA)平台中,可以克服多群感测中选择性差的缺点,并能够通过超级浓度同时进行温室气体的芯片气体。该策略利用近场强度增强(超过1500倍)的多阵容Seira技术以及MOF的出色的气体选择性和亲和力。实验证明,MOF-SEIRA平台在快速响应时间(<60秒),高精度(CO2:1.1%,CH4:0.4%),小占地面积(100×100),达到同时片上芯片感测μm2),宽浓度范围(0-2.5×104ppm)的优异线性度。另外,探讨了检测更多气体的优异可扩展性。这项工作开辟了实施一体化,实时和片上多百万检测的令人兴奋的可能性,并为温室气体传感应用提供了有价值的工具包。

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