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基于双介孔锡酸锌复合材料的超灵敏化学电阻式气体传感器用于室温下大米品质监测

Ultrasensitive Chemiresistive Gas Sensors Based on Dual-Mesoporous Zinc Stannate Composites for Room Temperature Rice Quality Monitoring.

作者信息

Xu Jinyong, Fan Xuxiong, Xu Kaichun, Wu Kaidi, Liao Hanlin, Zhang Chao

机构信息

College of Mechanical Engineering, Yangzhou University, Yangzhou, 225127, People's Republic of China.

ICB UMR 6303, CNRS, Univ. Bourgogne Franche-Comté, UTBM, 90010, Belfort, France.

出版信息

Nanomicro Lett. 2025 Jan 24;17(1):115. doi: 10.1007/s40820-024-01645-5.

Abstract

The integration of dual-mesoporous structures, the construction of heterojunctions, and the incorporation of highly concentrated oxygen vacancies are pivotal for advancing metal oxide-based gas sensors. Nonetheless, achieving an optimal design that simultaneously combines mesoporous structures, precise heterojunction modulation, and controlled oxygen vacancies through a one-step process remains challenging. This study proposes an innovative method for fabricating zinc stannate semiconductors featuring dual-mesoporous structures and tunable oxygen vacancies via a direct solution precursor plasma spray technique. As a proof of concept, the resulting zinc stannate-based coatings are applied to detect 2-undecanone, a key biomarker for rice aging. Remarkably, the zinc oxide/zinc stannate heterojunctions with a well-defined secondary pore structure exhibit exceptional gas-sensing performance for 2-undecanone at room temperature. Furthermore, practical experiments indicate that the developed sensor effectively identifies adulteration in various rice varieties. These results underscore the potential of this method for designing metal oxides with tailored properties for high-performance gas sensors. The enhanced adsorption capacity and dual-mesoporous features of this semiconductor make it a promising candidate for sensing applications in agricultural food safety inspections.

摘要

双介孔结构的整合、异质结的构建以及高浓度氧空位的引入对于推进基于金属氧化物的气体传感器至关重要。然而,通过一步法实现同时结合介孔结构、精确异质结调制和可控氧空位的优化设计仍然具有挑战性。本研究提出了一种创新方法,通过直接溶液前驱体等离子体喷涂技术制备具有双介孔结构和可调氧空位的锡酸锌半导体。作为概念验证,将所得的基于锡酸锌的涂层用于检测2-十一烷酮,这是水稻老化的关键生物标志物。值得注意的是,具有明确二次孔结构的氧化锌/锡酸锌异质结对室温下的2-十一烷酮表现出优异的气敏性能。此外,实际实验表明,所开发的传感器能够有效识别各种水稻品种中的掺假情况。这些结果强调了该方法在设计具有定制特性的金属氧化物以用于高性能气体传感器方面的潜力。这种半导体增强的吸附能力和双介孔特性使其成为农业食品安全检测传感应用的有前途的候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d57/11759721/6551a70a7dbb/40820_2024_1645_Fig1_HTML.jpg

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