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Journal ArticleDOI

Catalysis of transesterification reactions by lanthanides Unprecedented acceleration of methanolysis of aryl and alkyl esters promoted by La(OTf)3 at neutral sspH and ambient temperatures

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TLDR
In this article, a dimethoxy-bridged dimer of stoichiometry (La3+)2(–OCH3)2 was used for methanolysis of both aryl and alkyl esters.
Abstract
La3+ catalysis of the methanolysis of the esters p-nitrophenyl, 2,4-dinitrophenyl, and phenyl acetate (1–3), phenyl benzoate (4), and ethyl, i-propyl, cyclohexyl, and tert-butyl acetate (5, 6a, 6b, 7) was studied at 25°C as a function of sspH and [La(OTf)3]. The active form of the catalyst is attributed to a dimethoxy-bridged dimer of stoichiometry (La3+)2(–OCH3)2, having maximum activity at sspH 8 to 9. For preparative reactions, the active catalyst can be made in situ simply by adding 0.01 equiv of La(OTf)3, and 0.01 equiv of NaOCH3 to a methanol solution containing the ester (1 M). Strong catalysis of methanolysis of both aryl and alkyl esters was observed, although tert-butyl acetate was inert. At sspH 8.5, where the catalyst is maximally active, the transesterification reactions are accelerated by 40 000-fold to 18 000 000-fold in the presence of as little as 5 mM catalyst relative to the background reaction depending on the ester structure. A mechanism for catalysis of transesterification is present...

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Citations
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Journal ArticleDOI

Lanthanum(III) triflate catalyzed direct amidation of esters.

TL;DR: Lanthanum trifluoromethanesulfonate is an effective single-component catalyst for synthesizing a variety of amides directly from esters and amines under mild conditions.
Journal ArticleDOI

Billion-fold acceleration of the methanolysis of paraoxon promoted by La(OTf)3 in methanol.

TL;DR: Detailed analysis of the potentiometric titration data of La(OTf)(3) in methanol through fits to a multicomponent equilibrium mixture of dimers of general stoichiometry La(3+)(2)((-)OCH3)n, where n assumes values of 1-5, gives the equilibrium distribution of each as a function of.
Journal ArticleDOI

Combination of a Dinuclear Zn2+ Complex and a Medium Effect Exerts a 1012-Fold Rate Enhancement of Cleavage of an RNA and DNA Model System

TL;DR: The study shows that a simple model system comprising a dinuclear Zn2+ complex and a medium effect of the alcohol solvent achieves a catalytic reactivity that approaches enzymatic rates and is well beyond anything seen to date in water for the cleavage of these phosphate diesters.
Journal ArticleDOI

La3+-Catalyzed Methanolysis of Hydroxypropyl-p-nitrophenyl Phosphate as a Model for the RNA Transesterification Reaction

TL;DR: The methanolysis of hydroxypropyl-p-nitrophenyl phosphate (HPNPP, 1) promoted by La(OTf)(3) under buffered conditions was studied in methanol as a function of pH at 25 degrees C.
Journal ArticleDOI

Ligand-assisted rate acceleration in lanthanum(III) isopropoxide catalyzed transesterification of carboxylic esters.

TL;DR: The present La(III) catalyst was highly effective for the chemoselective transesterification in the presence of competitive 1°- and 2°-amines and esters were obtained in good to excellent yields as colorless materials without an inconvenient workup procedure.
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Electrospray mass spectra of lanthanides

TL;DR: In this paper, the electrospray mass spectra of several elements in the lanthanide series are presented with the focus being on understanding the basic processes that occur to yield such spectra.
Journal ArticleDOI

Hammett–Taft and Drago models in the prediction of acidity constant values of neutral and cationic acids in methanol†

TL;DR: In this paper, the Hammett and Taft model and the Drago dual-parameter model have been applied to a wide series of dissociation constants in methanol of carboxylic aliphatic acids, benzoic acid derivatives, phenols, protonated amines, anilinium and pyridinium derivatives.
Journal ArticleDOI

La3+-Catalyzed Methanolysis of Phosphate Diesters. Remarkable Rate Acceleration of the Methanolysis of Diphenyl Phosphate, Methyl p-Nitrophenyl Phosphate, and Bis(p-nitrophenyl) Phosphate

TL;DR: Detailed kinetic studies of the methanolysis of 5 at varying [La(3+)] and pH indicate that both La(3+) monomers and dimers with associated methoxides are reactive species.
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