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15.10 : α-Halogenation of Carboxylic Acid Derivatives: Overview

Unlike aldehydes and ketones, carboxylic acids do not readily participate in α halogenation reactions via enols or enolate intermediates. However, α-halogenated acids are obtained through other methods. One of the approaches is the Hell–Volhard–Zelinsky (HVZ) reaction, wherein the carboxylic acid is treated with halogen in the presence of PBr3. It involves the conversion of acid to acid halide, which exists in equilibrium with its enol form. The enol attacks the electrophilic halogen to produce an α-haloacid halide, which gives the α-halogenated acid upon hydrolysis. Other methods include the formation of acid chloride using sulfonyl chloride, which, upon treatment with N-halosuccinimide and traces of hydrogen halide, forms α-haloacid halide, and final hydrolysis gives the desired product.

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Alpha halogenationCarboxylic Acid DerivativesAldehydesKetonesAlpha halogenated AcidsHell Volhard Zelinsky ReactionPBr3Acid HalideEnol FormElectrophilic HalogenAlpha haloacid HalideHydrolysisSulfonyl ChlorideN halosuccinimideHydrogen Halide

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15.10 : α-Halogenation of Carboxylic Acid Derivatives: Overview

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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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15.8 : 알데히드와 케톤의 염기 촉진 α-할로겐화

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15.9 : 메틸 케톤의 다중 할로겐화: Haloform 반응

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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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15.15 : 염기 촉매 알돌 첨가 반응

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