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Ultrasensitive Hydrogen Sensor Based on Pd~0-Loaded SnO2 Electrospun Nanofibers at Room Temperature

机译:基于Pd〜0负载SnO2电纺纳米纤维的室温超灵敏氢传感器

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摘要

Pd~0-loaded SnO2 nanofibers have been successfully synthesized with different loaded levels via electrospinning process, sintering technology, and in situ reduction. This simple strategy could be expected to extend for the fabrication of similar metal-oxide loaded nanofibers using different precursors. The morphological and structural characteristics of the resultant product were investigated by scanning electron microscopy (SEM), transmission electron microscopy (TEM), X-ray diffraction (XRD), and X-ray photoelectron spectra (XPS). To demonstrate the usage of such Pd~0-loaded SnO2 nanomaterial, a chemical gas sensor has been fabricated and investigated for H2 detection. The sensing performances versus Pd~0-loaded levels have been investigated in detail. An ultralow limit of detection (20 ppb), high response, fast response and recovery, and selectivity have been obtained on the basis of the sensors operating at room temperature. The combination of SnO2 crystal structure and catalytic activity of Pd -loaded gives a very attractive sensing behavior for applications as real-time monitoring gas sensors.
机译:通过电纺丝工艺,烧结技术和原位还原技术成功地合成了负载Pd〜0的SnO2纳米纤维。可以预期,这种简单的策略将扩展到使用不同的前体来制造类似的负载金属氧化物的纳米纤维。通过扫描电子显微镜(SEM),透射电子显微镜(TEM),X射线衍射(XRD)和X射线光电子能谱(XPS)研究了所得产物的形态和结构特征。为了证明这种载有Pd〜0的SnO2纳米材料的用途,已经制造了一种化学气体传感器并进行了H2检测研究。详细研究了感测性能与Pd〜0负载水平之间的关系。基于在室温下运行的传感器,已经获得了超低检测限(20 ppb),高响应,快速响应和恢复以及选择性。 SnO2晶体结构和Pd负载的催化活性的结合为实时监测气体传感器的应用提供了非常诱人的传感性能。

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