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Journal ArticleDOI

Role of added chloride ions in alteration of reaction pathway in the oxidation of cyclic ketones by dichloroisocyanuric acid—A kinetic study

TLDR
In this paper, the effect of added chloride ions on kinetics and pathway of reaction between cyclic ketones (five to eight membered rings) and dichloroisocyanuric acid (DCICA) was studied in aqueous acetic acid-perchloric acid medium.
Abstract
Effect of added chloride ions on kinetics and pathway of reaction between cyclic ketones (five to eight membered rings) and dichloroisocyanuric acid (DCICA) was studied in aqueous acetic acid—perchloric acid medium. Formation of aliphatic dicarboxylic acids as the end products demonstrates the ring cleavage oxidation. Positive effect of acid and negative effect of dielectric constant on the reaction rate reveals a interaction between positive ion (oxidant in the form of H2OCl+) and dipolar substrate molecule. Zero and first orders by oxidant in absence and presence of added chloride ions illustrates the participation of substrate as enolic form of ketone and protonated ketone, respectively, in the rate determining steps. The observed order of reactivity of cyclic ketones (cyclohexanone > cyclooctanone > cyclopentanone > cycloheptanone) was explained on the bases of ring strain, change of hybridization and conformational considerations. The envisaged plausible mechanism based on order of reactants in presence and absence of added chloride ions was substantiated by the order of Arrhenius parameters.

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Journal ArticleDOI

Kinetics of ruthenium(III) catalyzed and uncatalyzed oxidation of monoethanolamine by N-bromosuccinimide

TL;DR: In this article, the first order in N-bromosuccinimide (NBS) was studied in an aqueous acetic acid medium in the presence of sodium acetate and perchloric acid, respectively.
Posted Content

Shift of Reaction Pathway by Added Chloride Ions in the Oxidation of Aromatic Ketones by Dichloroisocyanuric Acid—A Kinetic Study

TL;DR: In this paper, the role of added chloride ions on the shift of reaction pathway of oxidation of aromatic ketones (acetophenone, desoxybenzoin) by dichloroisocyanuric acid (DCICA) was studied in aqueous acetic acid-perchloric acid medium.
Journal ArticleDOI

Ruthenium(III) catalyzed oxidation of sugar alcohols by dichloroisocyanuric acid—A kinetic study

TL;DR: In this article, the reaction of ruthenium(III) catalyzed oxidation of biologically important sugar alcohols (myo-inositol, D-sorbitol, and Dmannitol) by dichloroisocyanuric acid was carried out in aqueous acetic acid-perchloric medium.
Journal ArticleDOI

Shift of Reaction Pathway by Added Chloride Ions in the Oxidation of Aromatic Ketones by Dichloroisocyanuric Acid—A Kinetic Study

TL;DR: In this paper, the role of added chloride ions on the shift of reaction pathway of oxidation of aromatic ketones (acetophenone, desoxybenzoin) by dichloroisocyanuric acid (DCICA) was studied in aqueous acetic acid-perchloric acid medium.
Patent

Method for preparing adipic acid from cyclopentanone by one pot process

TL;DR: In this article, a method for preparing adipic acid from cyclopentanone by a one-pot process is described, which has the substantial advantages of low economic and environment cost; easily separated products, simple post-treatment, and the like; and the method has good application prospects.
References
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Stereochemistry of Organic Compounds

TL;DR: Stereochemistry of Alkenes Conformation of Acyclic Molecules Configuration and conformation of cyclic Molecule Stereoselective Synthesis Chiroptical Properties Chirality in Molecules Devoid of Chiral Centres as discussed by the authors.
Journal ArticleDOI

Reactions of chlorine with inorganic and organic compounds during water treatment—Kinetics and mechanisms: A critical review

TL;DR: Comparison of chlorine to ozone reactivity towards aromatic compounds (electrophilic attack) shows a good correlation, with chlorine rate constants being about four orders of magnitude smaller than those for ozone.
Journal ArticleDOI

Use of Hydrogen Isotope Effects to Identify the Attacking Nucleophile in the Enolization of Ketones Catalyzed by Acetic Acid1-3

TL;DR: In this paper, the protium/tritium isotope effect at the carbcn is diagnostic of the attacking nucleophile, increasing as the basicity and reactivity of the nucleophile increases.
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