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Synergic effect within n-type inorganic-p-type organic nano-hybrids in gas sensors

机译:气体传感器中n型无机p型有机纳米杂化物的协同效应

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This paper describes the exploration of a synergic effect within n-type inorganic-p-type organic nano-hybrids in gas sensors. One-dimensional (1D) n-type SnO2-p-type PPy composite nanofibers were prepared by combining the electrospinning and polymerization techniques, and taken as models to explore the synergic effect during the sensing measurement. Outstanding sensing performances, such as large responses and low detection limits (20 ppb for ammonia) were obtained. A plausible mechanism for the synergic effect was established by introducing p-n junction theory to the systems. Moreover, interfacial metal (Ag) nanoparticles were introduced into the n-type SnO2-p-type PPy nano-hybrids to further supplement and verify our theory. The generality of this mechanism was further verified using TiO2-PPy and TiO2-Au-PPy nano-hybrids. We believe that our results can construct a powerful platform to better understand the relationship between the microstructures and their gas sensing performances.
机译:本文描述了气体传感器中n型无机p型有机纳米杂化物内协同效应的探索。结合电纺和聚合技术制备了一维(1D)n型SnO2-p型PPy复合纳米纤维,并作为模型探讨传感测量中的协同效应。获得了出色的传感性能,例如响应速度快,检出限低(氨为20 ppb)。通过在系统中引入p-n结理论,建立了一种可能的协同效应机制。此外,将界面金属(Ag)纳米颗粒引入n型SnO2-p型PPy纳米杂化物中,以进一步补充和验证我们的理论。使用TiO2-PPy和TiO2-Au-PPy纳米杂化物进一步验证了该机理的普遍性。我们相信,我们的结果可以构建一个强大的平台,以更好地了解微结构与其气体传感性能之间的关系。

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