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Amphiphilic Oxygenated Amorphous Carbon-Graphite Buckypapers with Gas Sensitivity to Polar and Non-Polar VOCs

机译:对极性和非极性VOC具有气体敏感性的两亲性氧化无定形碳-石墨巴基纸

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摘要

To precisely control the emission limit of volatile organic compounds (VOCs) even at trace amounts, reactive nanomaterials of, e.g., carbon are demanded. Particularly, considering the polaron-polar nature of VOCs, amphiphilic carbon nanomaterials with a huge surface area could act as multipurpose VOC sensors. Here, for the first time, a buckypaper sensor composed of oxygenated amorphous carbon (a-COx)/graphite (G) nanofilaments is developed. Presence of the oxygen-containing groups rises the selectivity of the sensor to polar VOCs, such as ethanol and acetone through formation of hydrogen bonding, affecting the electron withdrawing ability of the group, the hole carrier density, and, thus, the resistivity. On the other hand, the electrostatic interactions between the toluene aromatic ring and the π electrons of the graphitic crystals cause a formation of charge-transfer complexes, which could be the main mechanism of high responsiveness of the sensor towards non-polar toluene. To the best of my knowledge, an amphiphilic carbon nanofilamentous buckypaper has never been reported for gas sensing, and my device sensing polaron-polar VOCs is state of the art for environmental control.
机译:为了即使在痕量的情况下也精确地控制挥发性有机化合物(VOC)的排放极限,需要例如碳的反应性纳米材料。特别地,考虑到VOC的极性/非极性性质,具有大表面积的两亲碳纳米材料可以用作多功能VOC传感器。在这里,首次开发了由氧化的无定形碳(a-COx)/石墨(G)纳米丝组成的布基纸传感器。含氧基团的存在通过形成氢键提高了传感器对极性VOC(例如乙醇和丙酮)的选择性,从而影响了该基团的电子吸收能力,空穴载流子密度以及电阻率。另一方面,甲苯芳环与石墨晶体的π电子之间的静电相互作用导致电荷转移络合物的形成,这可能是传感器对非极性甲苯具有高响应性的主要机理。就我所知,两亲性碳纳米丝巴基纸从未报道过用于气体感测,而我的用于感测极性/非极性VOC的设备是用于环境控制的最新技术。

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