Manganese(II) Bromide Coordination toward the Target Product and By-Product of the Condensation Reaction between 2-Picolylamine and Acenaphthenequinone
Author:
Affiliation:
1. Arbuzov Institute of Organic and Physical Chemistry, FRC Kazan Scientific Center, Russian Academy of Sciences, 8 Arbuzov Street, Kazan 420088, Russia
Abstract
Funder
Russian Science Foundation
Assigned Spectral Analytical Center of FRC Kazan Scientific Center of RAS
Publisher
MDPI AG
Subject
Organic Chemistry,Physical and Theoretical Chemistry,Biochemistry
Link
https://www.mdpi.com/1422-8599/2023/1/M1606/pdf
Reference19 articles.
1. Synthesis of Ar-BIAN Ligands (Ar-BIAN = Bis(aryl)acenaphthenequinonediimine) Having Strong Electron-Withdrawing Substituents on the Aryl Rings and Their Relative Coordination Strength toward Palladium(0) and -(II) Complexes;Gasperini;Organometallics,2002
2. Mononuclear dpp-Bian Gallium Complexes: Synthesis, Crystal Structures, and Reactivity toward Alkynes and Enones;Fedushkin;Organometallics,2015
3. Pd-Diimine: A Highly Selective Catalyst System for the Base-Free Oxidative Heck Reaction;Gottumukkala;J. Org. Chem.,2011
4. Synthesis and Catalysis of Redox-Active Bis(imino)acenaphthene (BIAN) Iron Complexes;Villa;ChemCatChem,2017
5. Electronic Structure and Multicatalytic Features of Redox-Active Bis(arylimino)acenaphthene (BIAN)-Derived Ruthenium Complexes;Hazari;Inorg. Chem.,2016
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1. Advances in the chemistry of redox-active bis(imino)acenaphthenes (BIAN): A case of transition metal complexes;Coordination Chemistry Reviews;2024-09
2. Reaction Between 2-(2-Aminoethyl)pyridine and Acenaphthenequinone in the Presence of ZnCl2;Russian Journal of General Chemistry;2024-03
3. Cobalt(ii) coordination to an N4-acenaphthene-based ligand and its sodium complex;Dalton Transactions;2023
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