Mechanism for the oxidation reaction of alcohols using Cr(VI)-pyrazine complex

  • Park, Young-cho
  • Kim, Young-sik
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초록

Cr(VI)-pyrazine complex (PZCC) was synthesized by the reaction of pyrazine with chromium (VI) trioxide in 6 M HCl. The structure was characterized using IR spectroscopy and inductively coupled plasma (ICP). The oxidation of benzyl alcohol using PZCC in various solvents showed that the reactivity increased with the increase of the dielectric constant, in the order: N,N’-dimethylform- amide > acetone > chloroform > cyclohexene. In the presence of N,N’-dimethylformamide solvent with an acidic catalyst such as sulfuric acid (H<inf>2</inf>SO<inf>4</inf> solution), PZCC oxidized benzyl alcohol (H) and its derivatives (p-OCH<inf>3</inf>, m-CH<inf>3</inf>, m-OCH<inf>3</inf>, m-Cl, m-NO<inf>2</inf>). Electron-donating substituents accelerated the reaction rate, whereas electron acceptor groups retarded the reaction rate. Hammett reaction constant (ρ) was -0.70 (308 K). The observed experimental data were used to rationalize the hydride ion transfer in the rate-determining step. © 2016, The Korean Society of Industrial and Engineering Chemistry. All Rights Reserved.

키워드

Hammett reaction constant (ρ)Hydride ion transferPZCCRate-determining stepSubstituted benzyl alcohol
제목
Mechanism for the oxidation reaction of alcohols using Cr(VI)-pyrazine complex
저자
Park, Young-choKim, Young-sik
DOI
10.14478/ace.2015.1118
발행일
2016
유형
Article
저널명
공업화학
27
1
페이지
110 ~ 114