Investigation of the complexation reaction between 2-diethylaminomethyl-4-methylphenol and ZnCl2. Reaction mechanism and solvent effects
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,Condensed Matter Physics,Biochemistry
Reference34 articles.
1. Versatility in Phenolate Bonding in Organoaluminum Complexes Containing Mono- and Bis-ortho-Chelating Phenolate Ligands. X-ray Structures of Al{OC6H2(CH2NMe2)2-2,6-Me-4}3, Al(Me)2{OC6H2(CH2NMe2)2-2,6-Me-4}.cntdot.N-AlMe3, and Al(Me)2{OC6H2(CH2NMe2)2-2,6-Me-4}.cntdot.N-AlMe3.cntdot.O-AlMe3
2. Mono- and bis-ortho-chelated lithium and sodium phenolates. Molecular structures of the first lithium phenolate with a stable, trinuclear structure and of a tetranuclear sodium analog, [MOC6H2(CH2NMe2)2-2,6-Me-4]x (M = Li, x = 3; M = Na, x = 4)
3. Oxygenation of cyclopalladated N,N-dimethylbenzylamine complexes by inorganic and organic peroxides: oxygen insertion into the palladium-carbon bond
4. Influence of Intramolecular Coordination on the Aggregation of Sodium Phenolate Complexes. X-ray Structures of [NaOC6H4(CH2NMe2)-2]6 and [Na(OC6H2(CH2NMe2)2-2,6-Me-4)(HOC6H2(CH2NMe2)2-2,6-Me-4)]2
5. The first lithium phenolate with a trinuclear structure and the tetranuclear product of 1 : 1 addition of lithium iodide; X-ray structures of [LiOAr]3 and [Li2(OAr)I]2[OAr = OC6H2(CH2NMe2)2-2,6-Me-4]
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1. Solvent reorganization energy of electron transfer by a modified ellipsoidal cavity model;Journal of Molecular Structure: THEOCHEM;2007-10
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