
Product Details
|
Safety Profile |
Moderately toxic by ingestion andskin contact. Combustible liquid. Can react with oxidizingmaterials. To fight fire, use CO2, water spray or mist, drychemical. When heated to decomposition it emits acridand irritating fumes and smoke. |
|
Who Evaluation |
Evaluation year: 2001 |
InChI:InChI=1/C14H12O2/c15-14(13-9-5-2-6-10-13)16-11-12-7-3-1-4-8-12/h1-10H,11H2
Homomolecular esterification of benzalde...
We describe a method for supporting pall...
We synthesized new organomanganese compl...
Exceedingly high-speed Tishchenko reacti...
Treatment of mesoporous silicate SBA-15 ...
The commercially available nonionic supe...
1-Glycyl-3-methyl imidazolium chloride-i...
A wide variety of aldehydes are efficien...
Base-metal catalyzed dehydrogenative sel...
The coordination to ruthenium(ii) centre...
-
Various carboxylic benzyl esters were ob...
Montmorillonite K-10 and KSF clays catal...
In this paper, we present silver nanopar...
Supported metal catalysts have been test...
Gold nanoparticles (NPs) stabilized by c...
A convenient and efficient procedure for...
According to the results of a model stud...
Functionalized copper nanoparticles are ...
A new condensing agent, N,N prime -carbo...
A range of techniques are demonstrated f...
CeO2 acted as an efficient and reusable ...
-
Tridentate amine-imine-phosphine ligands...
A convenient procedure for the oxidation...
Dinuclear and mononuclear ruthenium comp...
Esters and amides were mechanochemically...
Several imidazolium ionic liquid (IL)-su...
Isopropoxyaluminum 1,1′-biphenyl-2-oxy-2...
Palladium on charcoal was found to catal...
Transesterification of methylbenzoate wi...
Four types of ruthenium(II) complexes, [...
Supported platinum catalysts have been s...
A synthetic route to magnesium guanidina...
Treatment of aromatic carboxylic acids a...
Abstract: A heterogeneous bifunctional h...
Five new heterobimetallic magnesiates be...
-
The synthesis of the mono(imidazolin-2-i...
Ruthenium complexes bearing N-heterocycl...
For many decades, compounds containing o...
Synergism in catalytic activity with the...
(equation presented) Primary and seconda...
Alkylation of π-rich heteroaromatics suc...
Supported gold-palladium nanoparticles a...
The synthesis and catalytic properties o...
1,3-Disubstituted imidazol(in)ium-2-carb...
Mn(i) complexes that enable metal-ligand...
Zeolites with the right shape and acid s...
Esters are an important class of chemica...
Disproportionation of aldehydes through ...
An novel sodium organoaluminate containi...
A cheap, facile and metal-free photochem...
C7H5BrO2*C7H5O2(1-)*Ag(1+)
toluene
p-cresyl benzoate
meta-bromotoluene
para-bromotoluene
2-methylphenyl bromide
benzoic acid benzyl ester
benzyl bromide
| Conditions | Yield |
|---|---|
|
at 25 ℃;
Product distribution;
|
benzyl 3-methylcyclohexa-1,4-diene-3-carboxylate
benzoic acid benzyl ester
benzyl bromide
toluene
| Conditions | Yield |
|---|---|
|
With
N-Bromosuccinimide; dilauryl peroxide;
In
tetrachloromethane;
for 5h;
Mechanism;
Product distribution;
|
63% 10 % Chromat. |
benzoic acid methyl ester
N,N'-dimethylbenzylamine
Benzyl acetate
sodium methylate
2-(benzylthio)imidazole
N-benzyl-2-pyridone
N-benzylpyridin-2-amine
benzamide
CAS:6035-45-6
CAS:99-34-3
CAS:88917-22-0
CAS:506-87-6