1972•Journal of the Chemical Society Faraday Transactions 1 Physical Chemistry in Condensed PhasesRequires access

Primary photochemical processes in aromatic molecules. Part 15.—The photochemistry of aromatic carbonyl compounds in aqueous solution

Michael B. Ledger, George Porter

Open publisher page 96 citations

Abstract

Phosphorescence has been observed from oxygen-free aqueous solutions of benzophenone and acetophenone. In the case of benzophenone the phosphorescence is strongly self-quenched. Rate constants for quenching of triplet benzophenone by various species have been measured.The photoreactivity of benzophenone in water has been reinvestigated. Photolysis does occur, the quantum yield being low and somewhat irreproducible. Benzopinacol is a product of the photolysis in oxygen-free solution, while in aerated solution hydroxybenzophenones are formed with a very low quantum yield.Flash photolysis experiments have characterized the triplet-triplet absorption of benzophenone in aqueous solution and show that the ketyl radical and another radical are intermediates in the reaction. It is suggested that hydrogen abstraction from water occurs to give free OH radicals which then attack benzophenone to give a cyclohexadienyl radical. The energetics of this process are considered.

About this research paper

What this paper is about

Phosphorescence has been observed from oxygen-free aqueous solutions of benzophenone and acetophenone. In the case of benzophenone the phosphorescence is strongly self-quenched. Rate constants for quenching of triplet benzophenone by various species have been measured.The photoreactivity of benzophenone in water has been reinvestigated. Photolysis does occur, the quantum yield being low and somewhat irreproducible. Benzopinacol is a product of the photolysis in oxygen-free solution, while in aerated solution hydroxybenzophenones are formed with a very low quantum yield.Flash photolysis experiments have characterized the triplet-triplet absorption of benzophenone in aqueous solution and show that the ketyl radical and another radical are intermediates in the reaction. It is suggested that hydrogen abstraction from water occurs to give free OH radicals which then attack benzophenone to give a cyclohexadienyl radical. The energetics of this process are considered.

Why it matters

OpenAlex reports 96 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Phosphorescence has been observed from oxygen-free aqueous solutions of benzophenone and acetophenone. In the case of benzophenone the phosphorescence is strongly self-quenched. Rate constants for quenching of triplet benzophenone by various species have been measured.The photoreactivity of benzophenone in water has been reinvestigated. Photolysis does occur, the quantum yield being low and somewhat irreproducible. Benzopinacol is a product of the photolysis in oxygen-free solution, while in aerated solution hydroxybenzophenones are formed with a very low quantum yield.Flash photolysis experiments have characterized the triplet-triplet absorption of benzophenone in aqueous solution and show that the ketyl radical and another radical are intermediates in the reaction. It is suggested that hydrogen abstraction from water occurs to give free OH radicals which then attack benzophenone to give a cyclohexadienyl radical. The energetics of this process are considered.

Key concepts: Benzophenone, Acetophenone, Photochemistry, Phosphorescence, Chemistry, Aqueous solution, Quenching (fluorescence), Reaction rate constant

Related papers

Back to paper searchBrowse research topicsOriginal source
Primary photochemical processes in aromatic molecules. Part 15.—The photochemistry of aromatic carbonyl compounds in aqueous solution — Research Paper | ScholarLens