A highly selective Pyrene appended Oxacalixarene receptor for MNA and 4- NP detection: an experimental and computational study

Author:

Upadhyay Himali1,Harikrishnan Uma2,Bhatt Devanshi1,Dhadnekar Namrata1,Kumar Kapil1,Panchal Manthan3,Trivedi Pooja4,Sindhav Gaurang4,Modi Krunal5

Affiliation:

1. Department of Biochemistry and Forensic sciences, Gujarat University, Navrangpura

2. Department of Chemistry, St. Xavier’s College, Navrangpura

3. Silver Oak Institute of Science, Silver Oak University

4. Department of Zoology, BMT, HGC and WBC, Gujarat University, Navrangpura

5. Department of Humanity and Sciences, School of engineering, Indrashil University, Kadi

Abstract

Abstract A novel bipyrene-substituted calix[4]arene (BPOC) was designed and synthesized to employ as a fluorescent probe, which enables the detection of MNA and 4-NP among all the explosive materials. Utilizing 1H-NMR, 13C-NMR, and FT-IR analysis techniques, its structure was characterized. The binding property of BPOC to various NACs, including 1,3-DNB, 2,3-DNT, 2,4-DNT, 2,6-DNT, 4-NP, 4-NT, and PA, revealed that the sensor binds to MNA and 4-NP with remarkable selectivity and detection limits of 0.2 µM and 0.3 µM, respectively, for MNA and 4-NP. Using docking and density functional theory (DFT), computational insights were provided for investigating the stability and spectroscopic analysis of the inclusion complex. The calculations supplement the findings significantly and clarify the structural geometry and mode of interactions in supramolecular complexation. In an MTT experiment on human PBMC to check for cytotoxicity, this chemical was found to influence 1 × 105 cell viability dose-dependently.

Publisher

Research Square Platform LLC

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