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Template-free synthesis of hierarchical ZnFe2O4 yolk-shell microspheres for high-sensitivity acetone sensors

机译:分层ZnFe2O4 Template-free合成yolk-shell微球为高灵敏度丙酮传感器

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Metal oxides with hierarchical microstructures have attracted tremendous attention with respect to their enhanced gas sensing properties. Herein, we reported the facile synthesis of hierarchical ZnFe2O4 yolk-shell microspheres via a template-free solvothermal strategy and the subsequent annealing and chemical etching process. Electron microscopy images undoubtedly demonstrated that the novel ZnFe2O4 architecture was constructed of a large number of nanosheet subunits with a thickness around 20 nm. As a proof-of-concept demonstration of the function, when evaluated as gas sensing materials, the as-prepared ZnFe2O4 yolk-shell microspheres manifested an extremely high response and a low detection limit to acetone at the operating temperature of 200 degrees C. Significantly, the response to 20 ppm acetone was retained well even after 200 cycles and continuous measurement for 30 days, indicating superior cyclability and long-term stability.
机译:金属氧化物与层次微观结构吸引了极大的关注和尊重吗增强的气体传感性能。我们报道的浅显的层次的综合通过一个ZnFe2O4 yolk-shell微球template-free solvothermal和策略随后的退火和化学腐蚀的过程。证明了小说ZnFe2O4架构是用大量nanosheet建造的吗子单元厚度20纳米左右。函数的概念验证演示,当评估气体传感材料,好ZnFe2O4 yolk-shell微球体现一个极高的响应和低检测限度丙酮在操作温度200度c。重要的是,应对20 ppm丙酮保留的很好200年之后周期和连续测量30天,表明cyclability优越,长期稳定。

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