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Carbon nanotube films as a platform to transduce molecular recognition events in metalloporphyrins

机译:碳纳米管薄膜作为转导金属卟啉分子识别事件的平台

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摘要

Porphyrins have been widely used for many years as functional materials for chemical sensors. Their outstanding chemical features are balanced by some restrictions in terms of transduction techniques. In particular, porphyrin layers are barely conductive, with the consequence that the fabrication of porphyrin based chemiresistors is not possible, except in few rare cases. On the other hand, carbon nanotubes (CNTs) have superior electric properties ranging from metallic to semiconductor in character. Although the conductivity of CNTs is very sensitive to adsorbed molecules, it should be considered that the adsorption onto carbon structures is also scarcely selective and cannot be modified unless other molecular recognition systems are coupled with the CNTs. Following this approach, in this paper we investigated the sensing properties of hybrid CNT-porphyrin films to explore the possibility of transducing the adsorption events occurring in a porphyrin layer into resistance changes of the CNT layers. The results obtained indicate that the presence of the porphyrin films increases the sensitivity of the electric resistance of the CNTs to the concentration of volatile compounds. This enhancement is probably due to the catalytic effect of the metalloporphyrin in conveying the charge transfer from the adsorbate molecule to the CNTs substrate. This property of metalloporphyrins may introduce a further differentiation between porphyrin based sensors that could be positively utilized in sensor array configurations.
机译:多年以来,卟啉作为化学传感器的功能材料已被广泛使用。在转导技术方面受到一些限制,平衡了它们出色的化学特性。特别是,卟啉层几乎不导电,结果,除了极少数情况下,不可能制造基于卟啉的化学电阻。另一方面,碳纳米管(CNT)具有从金属到半导体的优异电特性。尽管CNT的电导率对吸附的分子非常敏感,但应考虑到碳结构上的吸附也几乎没有选择性,除非将其他分子识别系统与CNT耦合,否则无法进行修饰。按照这种方法,在本文中,我们研究了杂化碳纳米管-卟啉薄膜的传感特性,以探讨将卟啉层中发生的吸附事件转换为碳纳米管层电阻变化的可能性。获得的结果表明,卟啉膜的存在增加了CNT的电阻对挥发性化合物浓度的敏感性。这种增强可能是由于金属卟啉在将电荷从被吸附物分子传递到CNTs基质时的催化作用所致。金属卟啉的这种特性可能会在基于卟啉的传感器之间引入进一步的区别,而这些卟啉可以在传感器阵列配置中得到积极利用。

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