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Electrical Percolation Threshold In Oxidized Single Wall Carbon Nanohorn-Polyvinylpyrrolidone Nanocomposite: A Possible Application For High Sensitivity Resistive Humidity Sensor

机译:氧化单壁碳纳米冬氟吡咯烷酮纳米复合材料中的电渗滤阈值:高灵敏度电阻湿度传感器的应用

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The objective of this study is to design and synthetize an oxidized single wall carbon nanohorns (SWCNHs) - polyvinylpyrrolidone (PVP) composite film as potential sensing material for resistive humidity sensor. Raman spectroscopy is used to investigate the nanohybrid formation and components interaction. Comparative results are presented for the percolation threshold values determined for 2 study-cases: carbon nanohorns in PVP film deposited on either rigid (Si / SiO2) or flexible substrate (polyimide). While in the first case, the percolation threshold occurs at a concentration of oxidized SWCNHs in the nanocomposite matrix in the range (0.05-0.1)% (w/w), in the second instance, the concentration of SWCNHs for the percolation threshold is between (2-3.5)% (w/w). Experimental findings are explained in terms of size effects in the geometry of the studied structures. The key role played by the electrical percolation threshold in the resistive sensing capabilities of the synthesized nanocomposite towards water molecules is described.
机译:本研究的目的是设计和合成氧化单壁碳纳米醇(SWCNHS) - 聚乙烯吡咯烷酮(PVP)复合膜作为电阻湿度传感器的电位传感材料。 RAMAN光谱用于研究纳米组织形成和组分相互作用。对于2例研究确定的渗透阈值,提出了对比结果:PVP膜中的碳纳米孔沉积在刚性(Si / SiO中 2 )或柔性基材(聚酰亚胺)。虽然在第一种情况下,在纳米复合材料基质中的氧化SWCNS浓度的浓度(0.05-0.1)%(w / w)中发生渗透阈值,在第二实例中,渗透阈值的SWCNH的浓度是之间的(2-3.5)%(w / w)。实验结果在研究结构的几何形状中的尺寸效应方面解释。描述了在合成的纳米复合材料朝向水分子的电阻检测能力中所发挥的主要作用。

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