College of Chemistry and Chemical Engineering, Qingdao University, Qingdao 266071, China.
Molecules. 2023 Mar 13;28(6):2615. doi: 10.3390/molecules28062615.
To exploit high-performance and stable sensing materials with a room working temperature is pivotal for portable and mobile sensor devices. However, the common sensors based on metal oxide semiconductors usually need a higher working temperature (usually above 300 °C) to achieve a good response toward gas detection. Currently, metal halide perovskites have begun to rise as a promising candidate for gas monitoring at room temperature but suffer phase instability. Herein, we construct 1D/3D PyPbI/FACsPbI (denoted by PyPbI/FACs) bilayer perovskite by post-processing spin-coating Pyrrolidinium hydroiodide (PyI) salt on top of 3D FACs film. Benefitting from the 1D PyPbI coating layer, the phase stability of 1D/3D PyPbI/FACs significantly improves. Simultaneously, the gas sensor based on the 1D/3D PyPbI/FACs bilayer perovskite presents a superior selectivity and sensitivity toward NO detection at room temperature, with a low detection limit of 220 ppb. Exposed to a 50 ± 3% relative humidity (RH) level environment for a consecutive six days, the 1D/3D PyPbI/FACs perovskite-based sensor toward 10 ppm NO can still maintain a rapid response with a slight attenuation. Gas sensors based on hybrid 1D/3D-structured perovskite in this work may provide a new pathway for highly sensitive and stable gas sensors in room working temperature, accelerating its practical application and portable device.
开发具有室温工作性能的高性能、稳定的传感材料对于便携式和移动传感器设备至关重要。然而,基于金属氧化物半导体的常见传感器通常需要更高的工作温度(通常高于 300°C)才能实现对气体检测的良好响应。目前,金属卤化物钙钛矿已开始成为室温下气体监测的有前途的候选材料,但存在相不稳定的问题。在此,我们通过在 3D FACs 薄膜上旋涂吡咯烷碘化氢(PyI)盐,构建了 1D/3D PyPbI/FACs 双层钙钛矿。得益于 1D PyPbI 涂层,1D/3D PyPbI/FACs 的相稳定性显著提高。同时,基于 1D/3D PyPbI/FACs 双层钙钛矿的气体传感器在室温下对 NO 检测表现出优异的选择性和灵敏度,检测限低至 220 ppb。在相对湿度(RH)为 50±3%的环境中连续暴露 6 天后,1D/3D PyPbI/FACs 钙钛矿基传感器对 10 ppm 的 NO 仍能保持快速响应,仅有轻微衰减。本工作中基于混合 1D/3D 结构钙钛矿的气体传感器可能为室温下高灵敏度、稳定的气体传感器提供了新途径,加速了其实际应用和便携式设备的发展。