Nucleophilic Fluorination of aromatic radionuclide compounds for Molecular Imagine technique

Authors

  • Dr. Sachin U Kalme Department of Chemistry, S.S.J.E.S., Arts, Commerce & Science College, Gangakhed, Dist. Parbhani- 431514, MS, India

DOI:

https://doi.org/10.59367/jy79g736

Keywords:

nucleophilic fluorination, TBAF, tert-alcohol, and fluorinated compounds.

Abstract

Our aim is the synthesis of 18F- radiolabeled drug molecules for the Positron emission tomography (PET), it is a functional imaging technique with important clinical applications in cardiology, oncology, and neurology. Our major work on the selective fluorination of aromatic compounds because of fluoroaromatic are important intermediates in the pharmaceutical especially in molecular imagine technique. 

References

Dave J.Adams and James H. Clark Chem. Nucleophilic routes to selectively fluorinated aromatics. Soc. Rev., 28,225-231, 1999.

William B. Farnham. Fluorinated Carbanions. Chemical Reviews, 96 (5), 1633-1640., 1996.

A. K. Shukla and Utham Kumar., Positron emission tomography: An overview, 31(1): 13–21, 2006.

A. M. J., Positron emission tomography. Paans. 363-382, 2006.

David J. Adams, James H. Clark, David J. Nightingale., Tetramethylammonium Hydrogendifluoride: A Convenient Source of Nucleophilic Fluoride. Synthetic Comm., 28, 23, 4295-4301, 1998.

Tobias L. Ross, Johannes Ermert, Carsten Hocke, and Heinz H. Coenen. Nucleophilic 18F-Fluorination of Heteroaromatic Iodonium Salts with No-Carrier-Added [18F]Fluoride. Journal of the American Chemical Societ. 129, 8018-8025, 2007.

Emily Henary, Stefanie Casa, Tyler L. Dost, Joseph C. Sloop, and Maged Henary, The Role of Small Molecules Containing Fluorine Atoms in Medicine and Imaging Applications. Pharmaceuticals (Basel). 17(3): 281. 2024.

Haoran Sun and Stephen G. Dimagno. Room-Temperature Nucleophilic Aromatic Fluorination: Experimental and Theoretical Studies. Angew. Chem. Int. Ed. 45, 2720-2725, 2006.

Gwilherm Evano, Antoine Nitelet, Pierre Thilmany, and Damien F. Dewez. Metal-Mediated Halogen Exchange in Aryl and Vinyl Halides: A Review. Front Chem.; 6: 114, 2018.

Dave J. Adams, James H. Clark and David J. Nightingale The effect of basicity on fluorodenitration reactions using tetramethylammonium salts. Tetrahdron; 55, 7725-7738, 1999.

Dehmlow, E. V. Advances in Phase-Transfer Catalysis [New synthetic methods (20)]. Angew. Chem., Int. Ed. Engl. 16, 493-505, 1977.

Domenico Albanese, Dario Landini, and Michele Penso. Hydrated Tetrabutylammonium Fluoride as a Powerful Nucleophilic Fluorinating Agent. J. Org. Chem. 63, (25), 9587-9589, 1998.

Pradeep K. Garg, Sudha Grag and Michael R. Zalutsky. Synthesis and preliminary evaluation of para- and meta-[18F]fluorobenzylguanidine. Nucl. Med. Bio. Vol. 21, 1, 97-103, 1994.

Kyu-Young Kim, Bong Chan Kim, Hee Bong Lee, and Hyunik Shin, Nucleophilic Fluorination of Triflates by Tetrabutylammonium Bifluoride. J. Org. Chem. 73(20), 8106-8108, 2008.

James H. Clark, David J. Nightingale, Methylhexamethylenetetramine fluoride dihydrate: a new fluorodenitration reagent. Journal of Fluorine Chemistry 78, 91-93, 1996.

Haoran Sun and Stephen G. Dimagno. Anhydrous tetrabutylammonium fluoride. J. Am. Chem. Soc. 127, 2050-2051, 2005.

Dong Wook Kim., Tetrabutylammonium Tetra(tert-Butyl Alcohol)-Coordinated Fluoride as a Facile Fluoride Source. Angew Chem. Int. Ed. 47, 8404-8406, 2008.

Anthony S. Pilcher, Herman L. Ammon, and Philip Deshong. Utilization of Tetrabutylammonium Triphenylsilyldifluoride as a Fluoride Source for Nucleophilic Fluorination. J. Am. Chem. Soc. 117, 5166-5167, 1995.

Thierry pages, Bernard R. Langlois, Fluorination of aromatic compounds from 1-aryl-3,3-dimethyltriazenes and fluoride anions in acidic medium: 1. A model for 18F labelling. Journal of Fluorin Chemistry 107, 321-327, 2001.

Downloads

Published

2024-07-26

Issue

Section

Articles

How to Cite

Nucleophilic Fluorination of aromatic radionuclide compounds for Molecular Imagine technique. (2024). International Journal of Futuristic Innovation in Arts, Humanities and Management (IJFIAHM), 3(1), 587-594. https://doi.org/10.59367/jy79g736