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Homocoupling Reactions of Azoles and Their Applications in Coordination Chemistry
Authors:Steffen B Mogensen  Mercedes K Taylor  Ji-Woong Lee
Institution:1.Department of Chemistry, University of Copenhagen, Universitetsparken 5, 2100 Copenhagen Ø, Denmark;2.Center for Integrated Nanotechnologies, Sandia National Laboratories, Albuquerque, NM 87185, USA
Abstract:Pyrazole, a member of the structural class of azoles, exhibits molecular properties of interest in pharmaceuticals and materials chemistry, owing to the two adjacent nitrogen atoms in the five-membered ring system. The weakly basic nitrogen atoms of deprotonated pyrazoles have been applied in coordination chemistry, particularly to access coordination polymers and metal-organic frameworks, and homocoupling reactions can in principle provide facile access to bipyrazole ligands. In this context, we summarize recent advances in homocoupling reactions of pyrazoles and other types of azoles (imidazoles, triazoles and tetrazoles) to highlight the utility of homocoupling reactions in synthesizing symmetric bi-heteroaryl systems compared with traditional synthesis. Metal-free reactions and transition-metal catalyzed homocoupling reactions are discussed with reaction mechanisms in detail.
Keywords:homocoupling  bipyrazole  transition-metal catalysts  metal–  organic frameworks
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