The Science of Synthesis Editorial Board, together with the volume editors and authors, is constantly reviewing the whole field of synthetic organic chemistry as presented in Science of Synthesis and evaluating significant developments in synthetic methodology. Several annual volumes updating content across all categories ensure that you always have access to state-of-the-art synthetic methodology.
The Science of Synthesis Editorial Board, together with the volume editors and authors, is constantly reviewing the whole field of synthetic organic chemistry as presented in Science of Synthesis and evaluating significant developments in synthetic methodology. Several annual volumes updating content across all categories ensure that you always have access to state-of-the-art synthetic methodology.
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Inhaltsangabe
47.1.1.4.12 Synthesis of Alkenes by Palladium-Catalyzed Cross-Coupling Reactions with Carbene Precursors 47.1.2.1.5 Synthesis of Alkenes by Cross-Coupling and Heck Reactions 47.1.2.1.6 Alkyl-Mizoroki Heck-Type Reactions 47.1.2.3.3 Asymmetric -Allyl Substitution Reactions 47.1.2.5 Allylic C H Functionalization 47.1.4.11 Synthesis of Alkenes by , -Dehydrogenation 47.1.5.2.3 Synthesis of Alkenes via Hydrogenation of Alkynes and Allenes 47.1.5.5 Synthesis of Alkenes via Metal-Catalyzed Hydrofunctionalizations 47.1.5.6 Synthesis of Functionalized Alkenes by Metal-Catalyzed Coupling of Carbonyls with Alkynes/Allenes 47.1.5.7 Synthesis of Alkenes via Radical Addition Reactions
<p>47.1.1.4.12 Synthesis of Alkenes by Palladium-Catalyzed Cross-Coupling Reactions with Carbene Precursors<br>47.1.2.1.5 Synthesis of Alkenes by Cross-Coupling and Heck Reactions<br>47.1.2.1.6 Alkyl-Mizoroki–Heck-Type Reactions<br>47.1.2.3.3 Asymmetric π-Allyl Substitution Reactions<br>47.1.2.5 Allylic C—H Functionalization<br>47.1.4.11 Synthesis of Alkenes by α,β-Dehydrogenation<br>47.1.5.2.3 Synthesis of Alkenes via Hydrogenation of Alkynes and Allenes<br>47.1.5.5 Synthesis of Alkenes via Metal-Catalyzed Hydrofunctionalizations<br>47.1.5.6 Synthesis of Functionalized Alkenes by Metal-Catalyzed Coupling of Carbonyls with Alkynes/Allenes<br>47.1.5.7 Synthesis of Alkenes via Radical Addition Reactions</p>
47.1.1.4.12 Synthesis of Alkenes by Palladium-Catalyzed Cross-Coupling Reactions with Carbene Precursors 47.1.2.1.5 Synthesis of Alkenes by Cross-Coupling and Heck Reactions 47.1.2.1.6 Alkyl-Mizoroki Heck-Type Reactions 47.1.2.3.3 Asymmetric -Allyl Substitution Reactions 47.1.2.5 Allylic C H Functionalization 47.1.4.11 Synthesis of Alkenes by , -Dehydrogenation 47.1.5.2.3 Synthesis of Alkenes via Hydrogenation of Alkynes and Allenes 47.1.5.5 Synthesis of Alkenes via Metal-Catalyzed Hydrofunctionalizations 47.1.5.6 Synthesis of Functionalized Alkenes by Metal-Catalyzed Coupling of Carbonyls with Alkynes/Allenes 47.1.5.7 Synthesis of Alkenes via Radical Addition Reactions
<p>47.1.1.4.12 Synthesis of Alkenes by Palladium-Catalyzed Cross-Coupling Reactions with Carbene Precursors<br>47.1.2.1.5 Synthesis of Alkenes by Cross-Coupling and Heck Reactions<br>47.1.2.1.6 Alkyl-Mizoroki–Heck-Type Reactions<br>47.1.2.3.3 Asymmetric π-Allyl Substitution Reactions<br>47.1.2.5 Allylic C—H Functionalization<br>47.1.4.11 Synthesis of Alkenes by α,β-Dehydrogenation<br>47.1.5.2.3 Synthesis of Alkenes via Hydrogenation of Alkynes and Allenes<br>47.1.5.5 Synthesis of Alkenes via Metal-Catalyzed Hydrofunctionalizations<br>47.1.5.6 Synthesis of Functionalized Alkenes by Metal-Catalyzed Coupling of Carbonyls with Alkynes/Allenes<br>47.1.5.7 Synthesis of Alkenes via Radical Addition Reactions</p>
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