Green synthesis of palladium nanocatalyst derived from the β-cyclodextrin used as effective heterogeneous catalyst for cyanation of aryl halides
Author:
Funder
Aksaray University
University of Qom
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Physical and Theoretical Chemistry
Reference30 articles.
1. Fe-based N-doped dendritic catalysts for catalytic ammoxidation of aromatic aldehydes to aromatic nitriles;Zhao;J. Colloid Interface Sci.,2020
2. Transformation of aromatic bromides into aromatic nitriles with n-BuLi, pivalonitrile, and iodine under metal cyanide-free conditions;Uchida;Tetrahedron,2019
3. Metal-mediated halogen exchange in aryl and vinyl halides: A review;Evano;Front. Chem.,2018
4. Recent advances in the synthesis of aryl nitrile compounds;Yan;Adv. Synth. Catal.,2017
5. Organophotoredox assisted cyanation of bromoarenes via silyl-radical-mediated bromine abstraction;Shee;Chem. Commun.,2020
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