Chemo-Mechanically Operating Palladium-Polymer Nanograting Film for a Self-Powered H2 Gas Sensor

材料科学 光伏系统 聚合物 氢传感器 一氧化碳 光电子学 纳米技术 化学工程 复合材料 催化作用 化学 有机化学 工程类 生物 生态学
作者
Min‐Ho Seo,Kyungnam Kang,Jae‐Young Yoo,Jaeho Park,Jae‐Shin Lee,In-Cheol Cho,Beom-Jun Kim,Yongrok Jeong,Jung‐Yong Lee,Byeongsu Kim,Junsuk Rho,Jun‐Bo Yoon,Inkyu Park
出处
期刊:ACS Nano [American Chemical Society]
卷期号:14 (12): 16813-16822 被引量:34
标识
DOI:10.1021/acsnano.0c05476
摘要

This study proposes a reliable and self-powered hydrogen (H2) gas sensor composed of a chemo-mechanically operating nanostructured film and photovoltaic cell. Specifically, the nanostructured film has a configuration in which an asymmetrically coated palladium (Pd) film is coated on a periodic polyurethane acrylate (PUA) nanograting. The asymmetric Pd nanostructures, optimized by a finite element method simulation, swell upon reacting with H2 and thereby bend the PUA nanograting, changing the amount of transmitted light and the current output of the photovoltaic cell. Since the degree of warping is determined by the concentration of H2 gas, a wide concentration range of H2 (0.1-4.0%) can be detected by measuring the self-generated electrical current of the photovoltaic cell without external power. The normalized output current changes are ∼1.5%, ∼2.8%, ∼3.5%, ∼5.0%, ∼21.5%, and 25.3% when the concentrations of H2 gas are 0.1%, 0.5%, 1.0%, 1.6%, 2%, and 4%, respectively. Moreover, because Pd is highly chemically reactive to H2 and also because there is no electrical current applied through Pd, the proposed sensor can avoid device failure due to the breakage of the Pd sensing material, resulting in high reliability, and can show high selectivity against various gases such as carbon monoxide, hydrogen sulfide, nitrogen dioxide, and water vapor. Finally, using only ambient visible light, the sensor was modularized to produce an alarm in the presence of H2 gas, verifying a potential always-on H2 gas monitoring application.
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