van den Broek Jan, Weber Ines C, Güntner Andreas T, Pratsinis Sotiris E
Particle Technology Laboratory, Institute of Energy & Process Engineering, Department of Mechanical and Process Engineering, ETH Zurich, CH-8092 Zurich, Switzerland.
Mater Horiz. 2021 Mar 1;8(3):661-684. doi: 10.1039/d0mh01453b. Epub 2020 Nov 24.
Portable and inexpensive gas sensors are essential for the next generation of non-invasive medical diagnostics, smart air quality monitoring & control, human search & rescue and food quality assessment to name a few of their immediate applications. Therein, analyte selectivity in complex gas mixtures like breath or indoor air remains the major challenge. Filters are an effective and versatile, though often unrecognized, route to overcome selectivity issues by exploiting additional properties of target analytes (e.g., molecular size and surface affinity) besides reactivity with the sensing material. This review provides a tutorial for the material engineering of sorption, size-selective and catalytic filters. Of specific interest are high surface area sorbents (e.g., activated carbon, silica gels and porous polymers) with tunable properties, microporous materials (e.g., zeolites and metal-organic frameworks) and heterogeneous catalysts, respectively. Emphasis is placed on material design for targeted gas separation, portable device integration and performance. Finally, research frontiers and opportunities for low-cost gas sensing systems in emerging applications are highlighted.
便携式且价格低廉的气体传感器对于下一代非侵入式医疗诊断、智能空气质量监测与控制、人员搜救以及食品质量评估等诸多直接应用而言至关重要。其中,在诸如呼吸气或室内空气等复杂气体混合物中实现分析物选择性仍然是主要挑战。过滤器是一种有效且通用的方法,尽管常常未被重视,它通过利用目标分析物除与传感材料反应性之外的其他特性(例如分子大小和表面亲和力)来克服选择性问题。本综述提供了吸附、尺寸选择性和催化过滤器材料工程方面的教程。特别感兴趣的分别是具有可调谐特性的高表面积吸附剂(例如活性炭、硅胶和多孔聚合物)、微孔材料(例如沸石和金属有机框架)以及多相催化剂。重点在于针对目标气体分离、便携式设备集成和性能的材料设计。最后,强调了新兴应用中低成本气体传感系统的研究前沿和机遇。