Engineering bio-molecular device with biocompatible sensor via symmetric encryption–decryption of spectroscopic signals towards F− detection and Zn2+ recognition by the imine hydrolysis pathway

Author:

Ghosh Pritam1234ORCID,Paul Suparna12345,Dey Debanjan12345,Jana Saibal6789,Roy Biswajit Gopal1011124ORCID,Mukhopadhyay Subhra Kanti1314154,Banerjee Priyabrata12345ORCID

Affiliation:

1. Surface Engineering & Tribology Group

2. CSIR-Central Mechanical Engineering Research Institute

3. Durgapur 713209

4. India

5. Academy of Scientific and Innovative Research (AcSIR)

6. Department of Bionano Technology

7. Hanyang University

8. Ansan 15588

9. Republic of Korea

10. Department of Chemistry

11. Sikkim University

12. Gangtok-737102

13. Department of Microbiology

14. The University of Burdwan

15. Burdwan 713104

Abstract

A small molecular probe was synthesized and its response towards biologically significant ions Zn2+ and F with low detection threshold (Zn2+: 50 nM & F: 3 μM) was investigated as well as Bio-molecular device designing was performed.

Funder

Department of Science and Technology, Ministry of Science and Technology

Publisher

Royal Society of Chemistry (RSC)

Subject

Materials Chemistry,General Chemistry,Catalysis

Reference39 articles.

1. J. W. Steed and J. L.Atwood , Supramolecular Chemistry , 2nd edn, 2009

2. A. Bianchi , K.Bowman-James and E.Garcia-Espana , Supramolecular chemistry of Anions , Wiley VCH , New York , 1997

3. Chemosensors: Principles, Strategies, and Applications , ed. B. Wang and E. V. Anslyn , John Wiley & Sons, Inc. , Hoboken, NJ, USA , 2011

4. A. D. Mc Naught and A.Wilkinson , IUPAC Compend. Chem. Terminol. , 1997 , p. 1598

5. Luminescent cation sensors: from host–guest chemistry, supramolecular chemistry to reaction-based mechanisms

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