4.5 Article

A facile synthesis of ferrocene functionalized vinyl ethers and their application as optical sensors for Cu2+ ions detection

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INORGANICA CHIMICA ACTA
卷 548, 期 -, 页码 -

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ELSEVIER SCIENCE SA
DOI: 10.1016/j.ica.2022.121371

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Ferrocene; C-O coupling; Vinyl ether; Optical sensing; Smart-phone sensing

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A facile synthesis of ferrocenyl vinyl ethers has been reported through a NaOH-assisted C-O bond-forming reaction. The method yields high amounts of products in a short time. The vinyl ethers formed through the reaction of 1,2-and 1,3-diols showed selective sensing capabilities for Cu2+ ions.
In this note, facile synthesis of ferrocenyl vinyl ethers has been reported through a NaOHassisted C-O bond -forming reaction of various primary alcohol and ferrocene chlorovinyl derivatives. The presented method is high yielding and delivers the products substantially in a quite instant time. Functionalised ferrocenyl chlor-ovinyl derivatives (-CHO, -CN and C(CN)2) were found to be well tolerated for a wide range of primary al-cohols. All the ferrocenated vinyl ethers are novel and not reported earlier. The vinyl ether derivatives formed through the reactions of 1,2-and 1,3-diols were tested for the optical metal sensing capabilities, and selectivity was observed for Cu2+ ions. The ferrocenated malenonitrile contaning vinyl ether showed a high sensitivity and selectivity towards Cu2+ among all the other tested metal ions. Upon interaction with Cu2+, the yellow color of this vinyl ether change into colourless and make the naked eye detection of Cu2+ ion under mild condition and very low concentrations. The receptor (vinyl ether) was created with a detection limit of 8.18 mu M, for the highly selective, specific, and sensitive detection of Cu2+. To improve the applicability of this sensing system for onsite quantitation, TLC silica strips soaked in the compound solution was performed. Moreover, the application was further extended by incorporating mobile phone-based sensing studies.

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