首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Conductive bio-Polymer nano-Composites (CPC): Chitosan-carbon nanotube transducers assembled via spray layer-by-layer for volatile organic compound sensing
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Conductive bio-Polymer nano-Composites (CPC): Chitosan-carbon nanotube transducers assembled via spray layer-by-layer for volatile organic compound sensing

机译:导电生物聚合物纳米复合材料(CPC):壳聚糖-碳纳米管换能器通过逐层喷涂组装,用于挥发性有机化合物的传感

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摘要

The chemo-electrical properties of chitosan-carbon nanotubes (Chit-CNT) Conductive bio-Polymer nano-Composites (CPC) transducers processed by spray layer-by-layer (LbL) technique have been investigated. Results show that unlike most synthetic polymer matrices, chitosan provides the transducer with high sensitivity towards not only polar vapours like water and methanol but also to a lesser extent toluene. Quantitative responses are obtained, well fitted with the Langmuir-Henry-Clustering (LHC) model allowing to link electrical signal to vapour content. Chit-CNT transducers selectivity was also correlated with an exponential law to the inverse of Flory-Huggins interaction parameter chi(12). These properties make Chit-CNT a good transducer to be implemented in an e-nose. Additionally, the observation by atomic force microscopy (AFM) of Chit-CNT morphology suggests a chemical nano-switching mechanism promoting tunnelling conduction and originating macroscopic vapour sensing.
机译:研究了壳聚糖-碳纳米管(Chit-CNT)的化学电学性质,研究了通过层层喷涂(LbL)技术处理的导电生物聚合物纳米复合材料(CPC)换能器。结果表明,与大多数合成聚合物基质不同,壳聚糖为换能器提供了不仅对极性蒸气(如水和甲醇)而且对程度较小的甲苯具有高灵敏度的传感器。获得了定量响应,该响应与Langmuir-Henry-Clustering(LHC)模型非常吻合,可以将电信号与蒸气含量关联起来。 Chit-CNT换能器的选择性也与Flory-Huggins相互作用参数chi(12)的倒数呈指数规律相关。这些特性使Chit-CNT成为要在电子鼻中实施的良好换能器。此外,通过原子力显微镜(AFM)对Chit-CNT形态的观察表明,化学纳米开关机制可促进隧穿传导并产生宏观的蒸汽感测。

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