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α-Halogenation of aldehydes and ketones is a reaction involving the substitution of α hydrogens with halogens in the presence of a base. The reaction begins with the abstraction of α hydrogen by the base to produce a nucleophilic enolate ion. This intermediate undergoes a subsequent nucleophilic substitution with the halogen to produce a monohalogenated carbonyl compound. If the starting substrate has more than one α hydrogen, it is difficult to stop the reaction at the stage of monosubstitution. This is due to the electron withdrawing inductive effect of the halogen that makes the remaining hydrogens highly acidic. As a consequence, the monohalogentaed compound undergoes further rapid enolization and halogenation until all α hydrogens are replaced by halogens.

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HalogenationAldehydesKetonesBase promotedEnolate IonNucleophilic SubstitutionMonohalogenatedElectron withdrawingInductive EffectRapid Enolization

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15.8 : Base-Promoted α-Halogenation of Aldehydes and Ketones

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15.1 : Enols의 반응성

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15.2 : Enolate 이온의 반응성

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15.3 : 에놀(Enol)과 에놀라산(Enolate)의 종류

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15.4 : Enolate 메커니즘 규칙

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15.5 : Enolates의 위치 선택적 형성

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15.6 : Enolization의 입체화학적 효과

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15.7 : 알데히드와 케톤의 산 촉매 α-할로겐화

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15.9 : 메틸 케톤의 다중 할로겐화: Haloform 반응

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15.10 : α-Carboxylic Acid Derivatives의 할로겐화: 개요

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15.11 : 카르복실산의 α-브롬화: 지옥-볼하르트-젤린스키 반응

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15.12 : α-할로카르보닐 화합물의 반응: 친핵성 치환

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15.13 : 에놀의 니트로화(nitrosation)

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15.14 : C–C 결합 형성: Aldol 응축 개요

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15.15 : 염기 촉매 알돌 첨가 반응

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