Radiation Chemistry of Dicarboxylic Acids in the Solid State. II. C-13 Isotope Effects in the Radiation-induced Decarboxylation of Malonic and Several Aliphatic Dicarboxylic Acids
Akio Hosaka, Akira Sugimori, Gen-ichi Tsuchihashi
Abstract
Akio Hosaka, Akira Sugimori, Gen-ichi Tsuchihashi
Abstract
Abstract The C-13 isotope effects in the radiation-induced decarboxylation of several dicarboxylic acids were investigated. Malonic acid showed a C-13 isotope effect of about 2%; this is much greater than those of monocarboxylic acids. The greater isotope effect of malonic acid is attributed to the intramolecular competition of the C-carboxyl bond rupture. Succinic, adipic, and pimeric acid, in which the intramolecular interaction of two carboxyl groups can be expected, gave large isotope-effect values, whereas glutaric and sebatic acid, in which such an effect may be expected to be small, showed lower isotope effects. Analogously, maleic acid (cis isomer) showed a larger isotope effect than did fumaric acid (trans isomer).
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Abstract The C-13 isotope effects in the radiation-induced decarboxylation of several dicarboxylic acids were investigated. Malonic acid showed a C-13 isotope effect of about 2%; this is much greater than those of monocarboxylic acids. The greater isotope effect of malonic acid is attributed to the intramolecular competition of the C-carboxyl bond rupture. Succinic, adipic, and pimeric acid, in which the intramolecular interaction of two carboxyl groups can be expected, gave large isotope-effect values, whereas glutaric and sebatic acid, in which such an effect may be expected to be small, showed lower isotope effects. Analogously, maleic acid (cis isomer) showed a larger isotope effect than did fumaric acid (trans isomer).
Key concepts: Chemistry, Decarboxylation, Dicarboxylic acid, Malonic acid, Kinetic isotope effect, Solid-state, Radiation chemistry, Organic chemistry