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Synthesis and gas sensitivity properties of novel metallocorroles and functionalized graphene oxide

机译:新型金属茂和功能化氧化石墨烯的合成及气敏性能

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Corrole compounds with the 18-pi electron marcrocycle display unique electrochemical properties and show potential value in sensor fields. In this paper, a novel 10-(4-Chlorophenyl)-5,15-di(4-methylphenyl)-Corrole (Cl-Cor 1) and its metal complex 10-(4-Chlorophenyl)-5,15-di(4-methylphenyl)-Corrole-Co (Cl-Cor-Co 2) were synthesized. Then corrole compounds were introduced onto graphene oxide (GO). UV-Vis spectroscopy, fourier-transform infrared spectroscopy (FTIR), and mass spectrometry were used to determine synthesized compounds. Capacity gas sensing analysis system was also examined to evaluate the gas sensitivity toward NO2 of Cl-Cor 1, Cl-Cor-Co 2, Cl-Cor+GO 3, Cl-Cor-Co+GO 4 and GO 5 at room temperature. It can be found that Cl-Cor-Co 2 has gas-sensing property for nitrogen dioxide (NO)(2), but recovery performance is low. It is interesting that the gas sensitivity and recovery performance could be evidently improved when the GO is grafted onto Cl-Corrole-Co, which is ascribed to the pi-pi interaction between Corrole and GO. The gas respond at room temperature enormously indicating that covalently Cl-Cor-Co+GO 4 can be used as gas sensors candidate.
机译:具有18-pi电子马氏环的酚化合物显示出独特的电化学性质,并在传感器领域显示出潜在价值。本文研究了一种新型的10-(4-氯苯基)-5,15-二(4-甲基苯基)-Corrole(Cl-Cor 1)及其金属配合物10-(4-氯苯基)-5,15-di(合成了4-甲基苯基)-Corrole-Co(Cl-Cor-Co 2)。然后将环氧化合物引入氧化石墨烯(GO)上。紫外-可见光谱,傅立叶变换红外光谱(FTIR)和质谱用于确定合成的化合物。还研究了容量气体传感分析系统,以评估室温下Cl-Cor 1,Cl-Cor-Co 2,Cl-Cor + GO 3,Cl-Cor-Co + GO 4和GO 5对NO2的气体敏感性。可以发现,Cl-Cor-Co 2具有对二氧化氮(NO)(2)的气敏特性,但回收率低。有趣的是,将GO接枝到Cl-Corrole-Co上可以明显改善气体敏感性和回收性能,这归因于Corrole和GO之间的pi-pi相互作用。气体在室温下的响应极大,表明共价Cl-Cor-Co + GO 4可以用作气体传感器候选对象。

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