Methyllithium is the simplest organolithium reagent with the empirical formula CH3Li. This s-block organometallic compound adopts an oligomeric structure both in solution and in the solid state. This highly reactive compound, invariably used in solution with an ether as the solvent, is a reagent in organic synthesis as well as organometallic chemistry. Operations involving methyllithium require anhydrous conditions, because the compound is highly reactive toward water. Oxygen and carbon dioxide are also incompatible with MeLi. Methyllithium is usually not prepared, but purchased as a solution in various ethers.
In the direct synthesis, methyl bromide is treated with a suspension of lithium in diethyl ether.
2 Li + MeBr → LiMe + LiBr
The lithium bromide forms a complex with the methyllithium. Most commercially available methyllithium consists of this complex. "Halide-free" methyllithium is prepared from methyl chloride. Lithium chloride precipitates from the diethyl ether since it does not form a strong complex with methyllithium. The filtrate consists of fairly pure methyllithium. Alternatively, commercial methyllithium can be treated with dioxane to precipitate LiBr(dioxane), which can be removed by filtration. The use of halide-free vs LiBr-MeLi has a decisive effect on some syntheses.
Methyllithium is both strongly basic and highly nucleophilic due to the partial negative charge on carbon and is therefore particularly reactive towards electron acceptors and proton donors. In contrast to n-BuLi, MeLi reacts only very slowly with THF at room temperature, and solutions in ether are indefinitely stable. Water and alcohols react violently. Most reactions involving methyllithium are conducted below room temperature. Although MeLi can be used for deprotonations, n-butyllithium is more commonly employed since it is less expensive and more reactive.
Methyllithium is mainly used as the synthetic equivalent of the methyl anion synthon.
Cette page est générée automatiquement et peut contenir des informations qui ne sont pas correctes, complètes, à jour ou pertinentes par rapport à votre recherche. Il en va de même pour toutes les autres pages de ce site. Veillez à vérifier les informations auprès des sources officielles de l'EPFL.
Le méthane est un composé chimique de formule chimique , découvert et isolé par Alessandro Volta entre 1776 et 1778. C'est l'hydrocarbure le plus simple et le premier terme de la famille des alcanes. Comme fluide frigorigène, il porte la dénomination « R50 » dans la nomenclature des réfrigérants, régie par la d'ANSI/ASHRAE. Assez abondant dans le milieu naturel, le méthane est un combustible à fort potentiel.
Les réactifs de Grignard, également appelés organomagnésiens mixtes, sont une classe de composés chimiques couramment utilisés en synthèse organique, notamment en chimie fine, comme dans l'industrie pharmaceutique. Ce sont des halogénures organomagnésiens de formule générique RMgX, où R représente un résidu organique, généralement alkyle ou aryle, et X représente un halogène, en général le brome ou le chlore, parfois l'iode et exceptionnellement le fluor.
Le triméthylaluminium (ou triméthyl-aluminium) est un composé chimique de formule Al2(CH3)6, abrégée en Al2Me6, (AlMe3)2 ou TMA. C'est une molécule de la famille des organoaluminiums. Il est pyrophorique en produisant une fumée blanche. Il est utilisé comme traceur visuel de mouvements d'air et dans la fabrication de semi-conducteurs. Al2Me6 existe en tant que dimère, analogie (pour sa structure et ses liaisons) au diborane.
Droplet-based microfluidics enables assays to be carried out at very high throughput (up to thousands of samples per second) and enables researchers to work with very limited material, such as primary cells, patient's biopsies or expensive reagents. An add ...
2016
, ,
Isonitrile 1 due to its carbene-like reactivity serves generally as a one-carbon synthon in a diverse set of organic transformations. We report in this article that the isocyano group can also act as a polarized triple bond to undergo, as a two-atom syntho ...
Wiley-Blackwell2016
,
We studied and compared the hydrodeoxygenation (HDO) and depolymerization of aldehyde-stabilized lignin and 4-propylguaiacol (PG), a model lignin monomer. We demonstrated by liquid phase adsorption that PG HDO catalyzed by Ru/C can be achieved in isooctane ...