Organic synthesis requires precise control over where new bonds form. Without understanding regioselectivity, predicting the outcome of even simple reactions becomes impossible. This course equips you with the foundational principles and theoretical models necessary to accurately predict which functional group site will react, enabling you to design and analyze synthetic pathways with confidence.
What you'll learn:
* Understand the fundamental definitions distinguishing regioselectivity, chemoselectivity, and stereoselectivity.
* Analyze the electronic (inductive, resonance) and steric factors that govern the preferred site of attack in various reaction types.
* Apply established rules, such as Markovnikov's and anti-Markovnikov's additions, to predict outcomes for additions across double and triple bonds.
* Master the role of reaction intermediates and transition state stability in determining the major regioselective product.
* Practice using modern theoretical concepts, like basic Frontier Molecular Orbital (FMO) analysis, to rationalize complex reaction preferences.
We begin with core terminology and progress through classical reaction types, analyzing mechanism stability and controlling factors, followed by extensive written exercises to solidify understanding. This course is designed for absolute beginners in organic chemistry or those needing a thorough review of foundational reaction theory. No prior knowledge of advanced synthesis is required. Start building your expertise in reaction control today.
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