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Is Phenylmagnesium bromide toxic?

Is Phenylmagnesium bromide toxic?

Hazard statement(s) H225 Highly flammable liquid and vapour. H260 In contact with water releases flammable gases which may ignite spontaneously. H303 May be harmful if swallowed. H314 Causes severe skin burns and eye damage.

What is Phenylmagnesium bromide used for?

Phenylmagnesium bromide (PhMgBr) solution is an organomagnesium reagent mainly used in Grignard reaction, which finds application as the key step in the synthesis of (S)-2(diphenylmethyl)pyrrolidine, a chiral solvating agent for the NMR analysis.

What does Phenylmagnesium bromide look like?

Phenylmagnesium bromide is a Grignard reagent. It is often used as a synthetic equivalent for the phenyl “Ph−” synthon….Phenylmagnesium bromide.

Names
Appearance Colorless crystals
Density 1.14 g cm−3
Solubility in water Reacts with water
Solubility 3.0M in diethyl ether, 1.0M in THF, 2.9M in 2Me-THF

What product results of Phenylmagnesium bromide is exposed to water?

C6H5MgBr + H2O = C6H6 + MgBr(OH) Phenylmagnesium bromide (C6H5MgBr) reacts with water and produce benzene (C6H6) as the product. Also, we can say, C6H5MgBr hydrolysis and form benzene as a product.

How is phenylmagnesium bromide prepared in the laboratory?

Phenylmagnesium bromide is commercially available as solutions of diethyl ether or THF. Laboratory preparation involves treating bromobenzene with magnesium metal, usually in the form of turnings. A small amount of iodine may be used to activate the magnesium to initiate the reaction. Coordinating solvents such as ether…

What should you do if someone is vomiting phenylmagnesium?

Perform CPR if necessary. Immediately flush contaminated eyes with gently flowing water. Do not induce vomiting. If vomiting occurs, lean patient forward or place on the left side (head-down position, if possible) to maintain an open airway and prevent aspiration. Keep patient quiet and maintain normal body temperature.

Which is molecularly imprinted electrochemical sensor based on graphene?

A novel molecularly imprinted electrochemical sensor based on Fe3O4 nanobeads immobilized on graphene (Fe3O4-MIP@RGO) has been developed for detecting 17β-estradiol (17β-E2) in water using reversible