Unraveling the Gas-Sensing Mechanisms of Lead-Free Perovskites Supported on Graphene

纳米技术 钙钛矿(结构) 材料科学 石墨烯 铅(地质) 纳米材料 纳米晶 卤化物 环境友好型 化学 无机化学 结晶学 生态学 生物 地貌学 地质学
作者
Juan Casanova‐Cháfer,Rocio García‐Aboal,Pedro Atienzar,Eduard Llobet
出处
期刊:ACS Sensors [American Chemical Society]
卷期号:7 (12): 3753-3763 被引量:35
标识
DOI:10.1021/acssensors.2c01581
摘要

Lead halide perovskites have been attracting great attention due to their outstanding properties and have been utilized for a wide variety of applications. However, the high toxicity of lead promotes an urgent and necessary search for alternative nanomaterials. In this perspective, the emerging lead-free perovskites are an environmentally friendly and harmless option. The present work reports for the first time gas sensors based on lead-free perovskite nanocrystals supported on graphene, which acts as a transducing element owing to its high and efficient carrier transport properties. The use of nanocrystals enables achieving excellent sensitivity toward gas compounds and presents better properties than those of bulky perovskite thin films, owing to their quantum confinement effect and exciton binding energy. Specifically, an industrially scalable, facile, and inexpensive synthesis is proposed to support two different perovskites (Cs3CuBr5 and Cs2AgBiBr6) on graphene for effectively detecting a variety of harmful pollutants below the threshold limit values. H2 and H2S gases were detected for the first time by utilizing lead-free perovskites, and ultrasensitive detection of NO2 was also achieved at room temperature. In addition, the band-gap type, defect tolerance, and electronic surface traps at the nanocrystals were studied in detail for understanding the differences in the sensing performance observed. Finally, a comprehensive sensing mechanism is proposed.
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