Acyclic Polyorganochalcogenoethers and their Functional Activities: Synthesis of Sterically Encumbered Hexakis(alkylchalcogenomethyl)benzenes [(RECH2)6C6] [E=S or Se] and their Potential as Selective Ionophores for Hg2+ Ions

Author:

Singh Jai Deo1,Prabhu Nallamuthu12,Jyoti 1,Kumari Renu1,Butcher Raymond J.3

Affiliation:

1. Department of Chemistry, Indian Institute of Technology Delhi (IITD), Hauz Khas, New Delhi 110 016, India

2. Department of Chemistry, Madras Christian College, Chennai 600 059, (TN), India

3. Department of Chemistry, Howard University, Washington, DC 20059, USA

Abstract

Introduction: An efficient synthesis of hexakis(alkylthio/selenomethyl)benzenes [(RSCH2)6C6 and (RSeCH2)6C6] (1-14) (where, R= nPr, iPr, nBu, iBu, sBu, tBu, nPent, iPent, and 2-Methyl-1-butyl) by the reaction of hexakis(bromomethyl)benzene with alkylthio or alkylseleno (RS-/RSe-) anions are demonstrated. Methods: They have been characterized by physicochemical and spectroscopic methods including single crystal X-ray crystallography. The balances between multiple [C(sp3)-H…S] or [C(sp3)-H…Se] intramolecular interactions in these species appear to decide their stability. Preliminary spectroscopic (UV-vis. and fluorescence) data on the behavior of alkylchalcogeno substituted hexa-benzenes in solution revealed their potential as ion-sensing species and function as highly selective ionophores for Ag+ and Hg2+ ions recognition. Results: In situ, (Hg-S) and (Hg-Se) bond formation on interaction with the chosen hexa-species (2 and 10) and Hg2+ cation revealed a unique ‘turn-off’ or ‘turn-on’ emissive behavior and these function act as reporting fluorescent tool for Hg2+ quantification without use of any external fluorophore. Conclusion: The present study describes an efficient and simple route for the synthesis of sterically encumbered poly-alkylthio/seleno benzenes in high purity and good yields.

Publisher

Bentham Science Publishers Ltd.

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