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第 18 章

芳香族化合物の反応

ベンゼン誘導体のNMR分光法
ベンゼン誘導体のNMR分光法
Simple unsubstituted benzene has six aromatic protons, all chemically equivalent. Therefore, benzene exhibits only a singlet peak at δ 7.3 ppm ...
ベンジル位での反応:酸化と還元
ベンジル位での反応:酸化と還元
The benzylic position describes the position of a carbon atom attached directly to a benzene ring. Benzene by itself does not undergo oxidation. In ...
ベンジル位での反応:ハロゲン化
ベンジル位での反応:ハロゲン化
Benzylic halogenation takes place under conditions that favor radical reactions such as heat, light, or a free radical initiator like peroxide. The ...
求電子芳香族置換:概要
求電子芳香族置換:概要
In an electrophilic aromatic substitution reaction, an electrophile substitutes for a hydrogen of an aromatic compound. Many functional groups can be ...
求電子芳香族置換:ベンゼンの塩素化と臭素化
求電子芳香族置換:ベンゼンの塩素化と臭素化
Chlorination and bromination are important classes of electrophilic aromatic substitutions, where benzene reacts with chlorine or bromine in the presence ...
求電子芳香族置換:ベンゼンのフッ素化とヨウ素化
求電子芳香族置換:ベンゼンのフッ素化とヨウ素化
Bromination and chlorination of aromatic rings by electrophilic aromatic substitution reactions are easily achieved, but fluorination and iodination are ...
求電子芳香族置換:ベンゼンのニトロ化
求電子芳香族置換:ベンゼンのニトロ化
The nitration of benzene is an example of an electrophilic aromatic substitution reaction. It involves the formation of a very powerful electrophile, the ...
求電子芳香族置換:ベンゼンのスルホン化
求電子芳香族置換:ベンゼンのスルホン化
Sulfonation of benzene is a reaction wherein benzene is treated with fuming sulfuric acid at room temperature to produce benzenesulfonic acid. Fuming ...
求電子芳香族置換:Friedel–Craftsによるベンゼンのアルキル化
求電子芳香族置換:Friedel–Craftsによるベンゼンのアルキル化
Friedel–Crafts reactions were developed in 1877 by the French chemist Charles Friedel and the American chemist James Crafts. Friedel–Crafts ...
求電子芳香族置換:Friedel–Craftsによるベンゼンのアシル化
求電子芳香族置換:Friedel–Craftsによるベンゼンのアシル化
The Friedel–Crafts acylation reactions involve the addition of an acyl group to an aromatic ring. These reactions proceed via electrophilic aromatic ...
Friedel–Crafts反応の限界
Friedel–Crafts反応の限界
Several restrictions limit the use of Friedel–Crafts reactions. First, the halogen in the alkyl halide must be attached to an sp3-hybridized carbon ...
置換基の方向性化効果:<em>オルト</em><em>・パラ</em>指向基
置換基の方向性化効果:オルト・パラ指向基
Ortho–para directors are substituent groups attached to the benzene ring and direct the addition of an electrophile to the positions ortho or para ...
置換基の方向性化効果:<em>メタ</em>指向性基
置換基の方向性化効果:メタ指向性基
Substituents on the benzene ring that direct an incoming electrophile to undergo substitution at the meta position are ...
<em>オルト</em><em>パラ</em>指向性活性化剤:-CH<sub>3</sub>、-OH、-&NoBreak;NH<sub>2</sub>、-OCH<sub>3</sub>
オルトパラ指向性活性化剤:-CH3、-OH、-⁠NH2、-OCH3
All ortho–para directors, excluding halogens, are activating groups. These groups donate electrons to the ring, making the ring carbons ...
<em>オルト</em><em>パラ</em>ディクティングディアクティベーター:ハロゲン
オルトパラディクティングディアクティベーター:ハロゲン
Halogens are ortho–para directors. They are more electronegative than carbon. Therefore, as ring substituents, they can withdraw electrons through ...
<em>メタ</em>ディレクティング不活性化剤: -NO<sub>2</sub>, -CN, -CHO, -&NoBreak;CO<sub>2</sub>R, -COR, -<sub>CO 2</sub>H
メタディレクティング不活性化剤: -NO2, -CN, -CHO, -⁠CO2R, -COR, -CO 2H
All meta-directing substituents are deactivating groups. These substituents withdraw electrons from the aromatic ring, making the ring less reactive ...
二置換ベンゼン誘導体における方向性と立体効果
二置換ベンゼン誘導体における方向性と立体効果
When disubstituted benzenes undergo electrophilic substitution, the product distribution depends on the directing effect of both substituents. When the ...
求核芳香族置換:付加-脱離(S<sub>N</sub>Ar)
求核芳香族置換:付加-脱離(SNAr)
Nucleophilic substitution in aromatic compounds is feasible in substrates bearing strong electron-withdrawing substituents positioned ortho or para to the ...
求核芳香族置換:脱離-付加
求核芳香族置換:脱離-付加
Simple aryl halides do not react with nucleophiles. However, nucleophilic aromatic substitutions can be forced under certain conditions, such as ...
アリールジアゾニウム塩の求核芳香族置換:芳香族S<sub>N</sub>1
アリールジアゾニウム塩の求核芳香族置換:芳香族SN1
Treating arylamines with nitrous acid gives aryldiazonium salts that are effective substrates in nucleophilic aromatic substitution reactions. The ...
ベンゼンからシクロヘキサンへの還元:触媒水素化
ベンゼンからシクロヘキサンへの還元:触媒水素化
Unlike the easy catalytic hydrogenation of an alkene double bond, hydrogenation of a benzene double bond under similar reaction conditions does not take ...
ベンゼンから1,4-シクロヘキサジエンへ:バーチ還元機構
ベンゼンから1,4-シクロヘキサジエンへ:バーチ還元機構
Birch reduction uses solvated electrons as reducing agents. The reaction converts benzene to 1,4-cyclohexadiene. The reaction proceeds by the transfer of ...
クロロベンゼンからフェノールへの加水分解:ダウプロセス
クロロベンゼンからフェノールへの加水分解:ダウプロセス
Simple aryl halides do not react with nucleophiles under normal conditions. However, the reaction can proceed under drastic conditions involving high ...
ベンゼンからフェノールへのクメン経由:ホックプロセス
ベンゼンからフェノールへのクメン経由:ホックプロセス
The synthesis of phenol from benzene via cumene and cumene hydroperoxide is called the Hock process. First, a Friedel–Crafts alkylation reaction of ...
フェノール類のキノン類への酸化
フェノール類のキノン類への酸化
In the presence of oxidizing agents, phenols are oxidized to quinones. Quinones can be easily reduced back to phenols using mild reducing agents. The ...
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