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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Enhanced HCHO gas sensing properties by Ag-loaded sunflower-like In2O3 hierarchical nanostructures
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Enhanced HCHO gas sensing properties by Ag-loaded sunflower-like In2O3 hierarchical nanostructures

机译:负载银的向日葵状In2O3分层纳米结构增强了HCHO气体传感性能

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摘要

Nanoscale Ag-loaded sunflower-like In2O3 hierarchical nanostructures are developed for HCHO detection. Such unique architectures are synthesized by an ambient temperature and pressure hydrolysis reaction combined with a subsequent chemical reduction process. Morphology characterizations confirm that homodisperse nanochains assembled by nanoparticles along the same direction are radially linked to a center to construct sunflower-like hierarchical nanostructures. Novel highly porous and branched structure of the 3D hierarchical architectures and the chemical and electronic sensitization effect of Ag nanoparticles endow Ag-loaded In2O3 nanostructures-based sensors with enhanced gas sensing performances in terms of fast response time (0.9 s), recovery time (14 s), high sensitivity and good sensing selectivity for 20 ppm HCHO. A multistage reaction formation mechanism of the sunflower-like hierarchical nanostructures, and a morphology-dependent sensing mechanism are proposed.
机译:纳米级负载银的向日葵状In2O3分层纳米结构被开发用于HCHO检测。这种独特的结构是通过环境温度和压力下的水解反应以及随后的化学还原过程合成的。形态学特征证实由纳米粒子沿相同方向组装的均分散纳米链径向连接至中心以构建向日葵状的分层纳米结构。 3D层级结构的新型高度多孔和分支结构以及Ag纳米颗粒的化学和电子增敏效果赋予了基于Ag的In2O3纳米结构传感器,在快速响应时间(0.9 s),恢复时间方面具有增强的气体传感性能(14 s),对于20 ppm HCHO的高灵敏度和良好的传感选择性。提出了向日葵状分层纳米结构的多阶段反应形成机理,以及形态依赖的传感机理。

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