AI Article Synopsis

  • The need for effective chemosensors for CN ions arises from their harmful effects on human health and the environment.
  • Two novel chemosensors, IF-1 and IF-2, were synthesized, with IF-2 demonstrating a strong selective binding to CN ions and a notable binding constant of 4.77 × 10 M and a low detection limit of 8.2 μM.
  • The color change from colorless to yellow upon binding with CN ions, coupled with DFT studies revealing significant charge transfer, indicates that IF-2 is a promising candidate for creating test strips for CN ion detection.

Article Abstract

The development of an effective and selective chemosensor for CN ions has become the need of the hour due to their hazardous impact on the environment and humans. Herein, we report the synthesis of two novel chemosensors, IF-1 and IF-2 based on 3-hydroxy-2-naphthohydrazide and aldehyde derivatives that have shown selective sensing of CN ions. IF-2 exhibited exclusive binding with CN ions that is further confirmed by the binding constant value of 4.77 × 10 M with a low detection limit (8.2 μM). The chemosensory potential is attributed to deprotonation of the labile Schiff base center by CN ions that results in a color change from colorless to yellow as visible by the naked eye. Accompanying this, a DFT study was also performed in order to find the interaction between the sensor (IF-1) and its ions (F). A notable charge transfer from 3-hydroxy-2-naphthamide to 2,4-di--butyl-6-methylphenol, was indicated by the FMO analysis. The QTAIM analysis revealed that in the complex compound, the strongest pure hydrogen-hydrogen bonding was observed between H53 and H58, indicated by a value of +0.017807. Due to its selective response, IF-2 can be successfully used for making test strips for the detection of CN ions.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10193203PMC
http://dx.doi.org/10.1039/d3ra00788jDOI Listing

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