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Tin dioxide-carbon heterostructures applied to gas sensing: Structure-dependent properties and general sensing mechanism

机译:用于气体传感的二氧化锡-碳异质结构:与结构有关的特性和通用传感机制

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摘要

Carbon materials such as carbon nanotubes (CNTs), graphene, and reduced graphene oxide (RGO) exhibit unique electrical properties, which are also influenced by the surrounding atmosphere. They are therefore promising sensing materials. Despite the existence of studies reporting the gas-sensing properties of metal oxide (MOx) coated nanostructured carbon, an incomplete understanding of their sensing mechanism remains. Here we report a systematic study on the preparation, characterization, and sensing properties of CNT and RGO composites with SnO2 coating. Atomic layer deposition (ALD) was applied to the conformal coating of the inner and outer walls of CNTs with thin films of SnO2 of various thicknesses, while nonaqueous sol-gel chemistry assisted by microwave heating was used to deposit tin dioxide onto RGO in one step. The sensing properties of SnO2/CNTs and SnO 2/RGO heterostructures toward NO2 target gas were investigated as a function of the morphology and density of the metal oxide coating. The general sensing mechanism of carbon-based heterostructures and the role of the various junctions involved are established.
机译:碳材料,例如碳纳米管(CNT),石墨烯和还原的氧化石墨烯(RGO)表现出独特的电特性,这些特性也受到周围环境的影响。因此,它们是有前途的传感材料。尽管已有研究报告了金属氧化物(MOx)涂覆的纳米结构碳的气体传感特性,但对其传感机理的理解仍不完全。在这里,我们报告了对具有SnO2涂层的CNT和RGO复合材料的制备,表征和传感性能的系统研究。将原子层沉积(ALD)应用于具有各种厚度的SnO2薄膜的CNT内壁和外壁的保形涂层,同时采用微波加热辅助的非水溶胶-凝胶化学法将二氧化锡一步沉积在RGO上。研究了SnO2 / CNTs和SnO 2 / RGO异质结构对NO2目标气体的感测特性,它是金属氧化物涂层的形貌和密度的函数。建立了碳基异质结构的一般感应机制以及所涉及的各种结的作用。

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