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Influence of the Camphor Sulphonic Acid (CSA) Intercalation on the Micro-structural and Gas Sensing Properties of Polyaniline-CeO2 Nanohybrid for NH3 Gas Detection

机译:樟脑磺酸(CSA)插层对NH3气体检测用聚苯胺-CeO2纳米杂化物微观结构和气敏性能的影响

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摘要

Developing a high performance sensing materials operating at room temperature (30 °C) is eminently a challenging task. The facile chemical oxidative polymerization route was employed for the synthesis of PAni-CeO2 nanohybrids with CSA intercalation (10–50 wt%) on the chains of protonated PAni. The cubic crystal structure of PAni-CeO2-CSA nanohybrids were revealed by X-ray diffractometry (XRD). Scanning electron microscopy (SEM) and transmission electron microscopy (TEM) were employed for the structural and morphological investigations. X-ray Photoelectron Spectroscopy (XPS) and Raman spectroscopy confirmed the formation of PAni-CeO2-CSA nanohybrid. The consequences of CSA intercalation on the gas sensing performance of PAni-CeO2 nanohybrids are explored through custom designed sensing system. The gas sensing investigations revealed that PAni-CeO2-CSA (50 wt%) nanohybrid exhibited highest response (93%) towards 100 ppm NH3 at 30°C. Advantageously, CSA intercalated PAni-CeO2 nanohybrid gas sensor delivered fast response and quick recovery (8 sec and 482 sec) with admirable stability (84.09%) towards NH3 at 30°C.
机译:开发一个高性能传感材料在室温下操作(30°C)非常具有挑战性的任务。是用于氧化聚合路线的合成PAni-CeO2 nanohybrids CSA夹层(10 - 50 wt %)链使质子化的聚苯胺。PAni-CeO2-CSA nanohybrids被x射线显示衍射(XRD)。显微镜(SEM)和透射电子显微镜(TEM)是用于结构和形态的调查。光电子能谱(XPS)和拉曼光谱证实的形成PAni-CeO2-CSA nanohybrid。夹层的气体传感性能PAni-CeO2 nanohybrids通过定制的探索设计传感系统。调查显示,PAni-CeO2-CSA (50wt %) nanohybrid表现出最高的反应(93%)对100 ppm NH3在30°C。插入PAni-CeO2 nanohybrid气体传感器快速响应和快速恢复(8秒和482秒)和令人钦佩的稳定(84.09%)对NH3在30°C。

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