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Lecture
Carbocycles: Synthesis and Reactivity
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Platinum Drugs for Cancer: Mechanisms and Variants
Covers platinum-based cancer drugs, electrophilic aromatic substitution, cross-coupling reactions, and SN2 and SN1 mechanisms.
Retrosynthesis Principles: Carbocyclic Compounds
Covers the principles of retrosynthesis and the synthesis of carbocyclic compounds with cross couplings and selectivity control.
Chemistry of Saturated Carbon Compounds: Reactions and Mechanisms
Provides an overview of saturated carbon compounds and their chemical reactions, focusing on halogenoalkanes and substitution mechanisms.
Retrosynthesis Principles of Carbocyclic Compounds
Covers retrosynthesis principles for carbocyclic compounds and selective reactivity of carbonyls and enolization.
Platinum Drugs for Cancer: How They Work
Explores the mechanism of platinum-based cancer drugs and the cross-coupling catalysis of metals in modifying aromatic compounds.
Carbonyl Compounds: Reactivity and Mechanisms
Explores the reactivity of carbonyl compounds, focusing on nucleophilic reactions and leaving group effects.
Nucleophilic Substitutions: SN Reactions
Explores nucleophilic substitutions through SN1 and SN2 mechanisms, stereochemical inversion, leaving group quality, and nucleophilicity determination.
Retrosynthesis: Disconnections C-C
Covers the principles of retrosynthesis, focusing on disconnections C-C and functional group disconnections.
Synthesis of T-Conjugated Molecules
Covers the synthesis of T-conjugated molecules, cross-coupling reactions, polymerization, and band gap tuning.
Transition Metal Catalysis: Kumada Coupling
Explores the history and significance of the Kumada Coupling reaction in transition metal catalysis.