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Ag-Modified In2O3/ZnO Nanobundles with High Formaldehyde Gas-Sensing Performance

机译:具有高甲醛气敏性能的Ag改性In2O3 / ZnO纳米束

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摘要

Ag-modified In2O3/ZnO bundles with microano porous structures have been designed and synthesized with by hydrothermal method continuing with dehydration process. Each bundle consists of nanoparticles, where nanogaps of 10–30 nm are present between the nanoparticles, leading to a porous structure. This porous structure brings high surface area and fast gas diffusion, enhancing the gas sensitivity. Consequently, the HCHO gas-sensing performance of the Ag-modified In2O3/ZnO bundles have been tested, with the formaldehyde-detection limit of 100 ppb (parts per billion) and the response and recover times as short as 6 s and 3 s, respectively, at 300 °C and the detection limit of 100 ppb, response time of 12 s and recover times of 6 s at 100 °C. The HCHO sensing detect limitation matches the health standard limitation on the concentration of formaldehyde for indoor air. Moreover, the strategy to synthesize the nanobundles is just two-step heating and easy to scale up. Therefore, the Ag-modified In2O3/ZnO bundles are ready for industrialization and practical applications.
机译:通过水热法并结合脱水过程,设计并合成了具有微/纳米孔结构的Ag改性In2O3 / ZnO束。每个束由纳米颗粒组成,纳米颗粒之间存在10–30 nm的纳米间隙,从而形成多孔结构。这种多孔结构带来高表面积和快速气体扩散,增强了气体敏感性。因此,已经测试了Ag改性的In2O3 / ZnO束的HCHO气敏性能,甲醛检测极限为100 ppb(十亿分之一),响应和恢复时间分别为6 s和3 s,分别在300°C和100 ppb的检测极限下,响应时间为12 s,在100°C下的恢复时间为6 s。 HCHO感测检测限符合室内空气中甲醛浓度的健康标准限制。此外,合成纳米束的策略仅需两步加热,并且易于放大。因此,Ag改性的In2O3 / ZnO束准备用于工业化和实际应用。

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