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Catalytic hydrogenation of alkenes is a transition-metal catalyzed reduction of the double bond using molecular hydrogen to give alkanes. The mode of hydrogen addition follows syn stereochemistry.

The metal catalyst used can be either heterogeneous or homogeneous. When hydrogenation of an alkene generates a chiral center, a pair of enantiomeric products is expected to form. However, an enantiomeric excess of one of the products can be facilitated using an enantioselective reaction or an asymmetric hydrogenation process using chiral homogeneous catalysts. The chiral catalysts are designed such that the metal coordinates to a chiral ligand. The most frequently used chiral ligand is BINAP [(2,2'-bis(diphenylphosphino)-1,1'-binaphthyl] — a chelating diphosphine. The metal coordinates to the two phosphorus atoms of BINAP, creating a chiral environment for itself. Such chiral catalysts have tremendous applications in pharmaceutical industries, such as the asymmetric synthesis of (S)-naproxen, an anti-inflammatory drug molecule, and the synthesis of L-dopa, a drug used to treat patients with Parkinson's disease.

Asymmetric hydrogenation is specific to the type of double bond undergoing reduction. The presence of a functional group directly adjacent to the target double bond is essential for the hydrogenation process as it aids with effective coordination of the metal.

Tags

AlkenesCatalytic HydrogenationReductionTransition metal CatalystMolecular HydrogenSyn StereochemistryHeterogeneous CatalystHomogeneous CatalystChiral CenterEnantiomeric ProductsEnantioselective ReactionAsymmetric HydrogenationChiral Homogeneous CatalystsChiral LigandBINAPDiphosphinePharmaceutical IndustriesS naproxenL dopa

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8.15 : Reduction of Alkenes: Asymmetric Catalytic Hydrogenation

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8.1 : 친전자성 첨가물의 위치 선택성-과산화물 효과

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8.2 : 자유 라디칼 연쇄 반응 및 알켄의 중합

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8.3 : 알켄의 할로겐화

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8.4 : Alkenes에서 Halohydrin의 형성

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8.5 : Alkenes의 Acid-Catalyzed Hydration (산성 촉매 수화)

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8.6 : Regioselectivity and Stereochemistry of Acid-Catalyzed Hydration(산-촉매 수화의 위치 선택성 및 입체화학)

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8.7 : Oxymercuration-알켄 환원

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8.8 : Hydroboration-Alkenes의 산화

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8.9 : Hydroboration의 위치 선택성 및 입체화학(Regioselectivity and Stereochemistry of Hydroboration)

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8.10 : 알켄의 산화 : 오스뮴 테트라 옥사이드를 사용한 Syn Dihydroxylation

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8.11 : 알켄의 산화 : 과망간산 칼륨을 사용한 Syn Dihydroxylation

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8.12 : 알켄의 산화 : 과산화산을 사용한 안티 디하이드록실화

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8.13 : 알켄의 산화적 분열: Ozonolysis

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8.14 : 알켄의 환원: 촉매 수소화

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