Substrate dependent reaction channels of the Wolff–Kishner reduction reaction: A theoretical study

Wolff–Kishner reduction reactions were investigated by DFT calculations for the first time. B3LYP/6-311+G(d,p) SCRF=(PCM, solvent = 1,2-ethanediol) optimizations were carried out. To investigate the role of the base catalyst, the base-free reaction was examined by the use of acetone, hydrazine (H2N–...

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Main Authors: Shinichi Yamabe, Guixiang Zeng, Wei Guan, Shigeyoshi Sakaki
Format: Article
Language:English
Published: Beilstein-Institut 2014-01-01
Series:Beilstein Journal of Organic Chemistry
Subjects:
Online Access:https://doi.org/10.3762/bjoc.10.21
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spelling doaj-0b2c5c453158446a907099cfb2ef86012021-02-02T03:25:46ZengBeilstein-InstitutBeilstein Journal of Organic Chemistry1860-53972014-01-0110125927010.3762/bjoc.10.211860-5397-10-21Substrate dependent reaction channels of the Wolff–Kishner reduction reaction: A theoretical studyShinichi Yamabe0Guixiang Zeng1Wei Guan2Shigeyoshi Sakaki3Fukui Institute for Fundamental Chemistry, Kyoto University, Takano-Nishihiraki-cho 34-4, Sakyo-ku, Kyoto 606-8103, JAPAN. Phone: +81-075-711-7907Fukui Institute for Fundamental Chemistry, Kyoto University, Takano-Nishihiraki-cho 34-4, Sakyo-ku, Kyoto 606-8103, JAPAN. Phone: +81-075-711-7907Fukui Institute for Fundamental Chemistry, Kyoto University, Takano-Nishihiraki-cho 34-4, Sakyo-ku, Kyoto 606-8103, JAPAN. Phone: +81-075-711-7907Fukui Institute for Fundamental Chemistry, Kyoto University, Takano-Nishihiraki-cho 34-4, Sakyo-ku, Kyoto 606-8103, JAPAN. Phone: +81-075-711-7907Wolff–Kishner reduction reactions were investigated by DFT calculations for the first time. B3LYP/6-311+G(d,p) SCRF=(PCM, solvent = 1,2-ethanediol) optimizations were carried out. To investigate the role of the base catalyst, the base-free reaction was examined by the use of acetone, hydrazine (H2N–NH2) and (H2O)8. A ready reaction channel of acetone → acetone hydrazine (Me2C=N–NH2) was obtained. The channel involves two likely proton-transfer routes. However, it was found that the base-free reaction was unlikely at the N2 extrusion step from the isopropyl diimine intermediate (Me2C(H)–N=N–H). Two base-catalyzed reactions were investigated by models of the ketone, H2N–NH2 and OH−(H2O)7. Here, ketones are acetone and acetophenone. While routes of the ketone → hydrazone → diimine are similar, those from the diimines are different. From the isopropyl diimine, the N2 extrusion and the C–H bond formation takes place concomitantly. The concomitance leads to the propane product concertedly. From the (1-phenyl)ethyl substituted diimine, a carbanion intermediate is formed. The para carbon of the phenyl ring of the anion is subject to the protonation, which leads to a 3-ethylidene-1,4-cyclohexadiene intermediate. Its [1,5]-hydrogen migration gives the ethylbenzene product. For both ketone substrates, the diimines undergoing E2 reactions were found to be key intermediates.https://doi.org/10.3762/bjoc.10.21acetoneacetophenoneDFT calculationsdiimine intermediatereduction reactiontransition statesWolff–Kishner
collection DOAJ
language English
format Article
sources DOAJ
author Shinichi Yamabe
Guixiang Zeng
Wei Guan
Shigeyoshi Sakaki
spellingShingle Shinichi Yamabe
Guixiang Zeng
Wei Guan
Shigeyoshi Sakaki
Substrate dependent reaction channels of the Wolff–Kishner reduction reaction: A theoretical study
Beilstein Journal of Organic Chemistry
acetone
acetophenone
DFT calculations
diimine intermediate
reduction reaction
transition states
Wolff–Kishner
author_facet Shinichi Yamabe
Guixiang Zeng
Wei Guan
Shigeyoshi Sakaki
author_sort Shinichi Yamabe
title Substrate dependent reaction channels of the Wolff–Kishner reduction reaction: A theoretical study
title_short Substrate dependent reaction channels of the Wolff–Kishner reduction reaction: A theoretical study
title_full Substrate dependent reaction channels of the Wolff–Kishner reduction reaction: A theoretical study
title_fullStr Substrate dependent reaction channels of the Wolff–Kishner reduction reaction: A theoretical study
title_full_unstemmed Substrate dependent reaction channels of the Wolff–Kishner reduction reaction: A theoretical study
title_sort substrate dependent reaction channels of the wolff–kishner reduction reaction: a theoretical study
publisher Beilstein-Institut
series Beilstein Journal of Organic Chemistry
issn 1860-5397
publishDate 2014-01-01
description Wolff–Kishner reduction reactions were investigated by DFT calculations for the first time. B3LYP/6-311+G(d,p) SCRF=(PCM, solvent = 1,2-ethanediol) optimizations were carried out. To investigate the role of the base catalyst, the base-free reaction was examined by the use of acetone, hydrazine (H2N–NH2) and (H2O)8. A ready reaction channel of acetone → acetone hydrazine (Me2C=N–NH2) was obtained. The channel involves two likely proton-transfer routes. However, it was found that the base-free reaction was unlikely at the N2 extrusion step from the isopropyl diimine intermediate (Me2C(H)–N=N–H). Two base-catalyzed reactions were investigated by models of the ketone, H2N–NH2 and OH−(H2O)7. Here, ketones are acetone and acetophenone. While routes of the ketone → hydrazone → diimine are similar, those from the diimines are different. From the isopropyl diimine, the N2 extrusion and the C–H bond formation takes place concomitantly. The concomitance leads to the propane product concertedly. From the (1-phenyl)ethyl substituted diimine, a carbanion intermediate is formed. The para carbon of the phenyl ring of the anion is subject to the protonation, which leads to a 3-ethylidene-1,4-cyclohexadiene intermediate. Its [1,5]-hydrogen migration gives the ethylbenzene product. For both ketone substrates, the diimines undergoing E2 reactions were found to be key intermediates.
topic acetone
acetophenone
DFT calculations
diimine intermediate
reduction reaction
transition states
Wolff–Kishner
url https://doi.org/10.3762/bjoc.10.21
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AT guixiangzeng substratedependentreactionchannelsofthewolffkishnerreductionreactionatheoreticalstudy
AT weiguan substratedependentreactionchannelsofthewolffkishnerreductionreactionatheoreticalstudy
AT shigeyoshisakaki substratedependentreactionchannelsofthewolffkishnerreductionreactionatheoreticalstudy
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