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A Study for Kinetics and Oxidation Reaction of Alcohols by Cr(VI)-4-(Dimethylamino)pyridine

크롬(VI)-4-(Dimethylamino)pyridine에 의한 알코올류의 산화반응과 반응속도에 관한 연구

  • Kim, Young-Sik (Department of Chemical Engineering, Kangwon National University) ;
  • Park, Young-Cho (Department of Chemical Engineering, Kangwon National University) ;
  • Kim, Young Jun (Department of Cosmetic Science, Chungwoon University)
  • 김영식 (강원대학교 화학공학과) ;
  • 박영조 (강원대학교 화학공학과) ;
  • 김영준 (청운대학교 화장품과학과)
  • Received : 2012.09.19
  • Accepted : 2013.01.10
  • Published : 2013.01.31

Abstract

Cr(VI)-4-(dimethylamino)pyridine[4-(dimethylamino)pyridinium chlorochromate] was synthesized by the reaction of 4-(dimethylamino)pyridine with chromium trioxide in 6M-HCl, and characterized by IR, ICP. The oxidation of benzyl alcohol using 4-(dimethylamino)pyridinium chlorochromate in various solvents showed that the reactivity increased with the increase of the dielectric constant(${\varepsilon}$), in the order: cyclohexene$H_2SO_4$ solution), 4-(dimethylamino)pyridinium chlorochromate oxidized benzyl alcohol and its derivatives(p-$OCH_3$, m-$CH_3$, H, m-$OCH_3$, m-Cl, m-$NO_2$) smoothly in DMF. Electron-donating substituents accelerated the reaction, whereas electron acceptor groups retarded the reaction. The Hammett reaction constant(${\rho}$) was -0.68(303K). The observed experimental data was used to rationalize the hydride ion transfer in the rate-determining step.

6M-HCl 용매 하에서 헤테로고리 화합물인 4-(dimethylamino)pyridine과 chromium(VI) trioxide의 반응을 통하여 4-(dimethylamino)pyridinium chlorochromate[$C_7H_{10}N_2HCrO_3Cl$] 착물을 합성하여, 적외선분광광도법(IR), 유도결합 플라즈마(ICP) 등으로 구조를 확인하였다. 여러 가지 용매 하에서 4-(dimethylamino)pyridinium chlorochromate를 이용하여 벤질알코올의 산화반응을 측정한 결과 유전상수(${\varepsilon}$) 값이 큰 용매 즉, 시클로헥센<클로로포름<아세톤$H_2SO_4$)를 이용한 N,N'-디메틸포름아미드 용매 하에서 4-(dimethylamino)pyridinium chlorochromate는 벤질 알코올과 그의 유도체들(p-$OCH_3$, m-$CH_3$, H, m-$OCH_3$, m-Cl, m-$NO_2$)을 효과적으로 산화시켰다. 그리고 전자받개 그룹들은 반응속도가 감소한 반면에 전자주개 치환체들은 반응속도를 증가시켰다. 또한 Hammett 반응상수(${\rho}$) 값은 -0.68(303K) 이었다. 그러므로 본 실험에서 알코올의 산화반응 과정은 속도결정단계에서 수소화 전이가 일어나는 메카니즘임을 알 수 있었다.

Keywords

References

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