DP Chemistry · HL / SL · Reactivity 3. What are the mechanisms of chemical change?

R3.4 Electron-pair sharing reactions

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Introduction: Electron-Pair Sharing Reactions

Many of the most important reactions in organic chemistry can be understood through a single unifying idea: electron-rich species donate electron pairs to electron-deficient species. This section introduces the key players , nucleophiles and electrophiles , and the reaction types they drive, including nucleophilic substitution and electrophilic addition.

To understand why these reactions happen, we also need to understand heterolytic fission , the uneven breaking of covalent bonds that generates the charged intermediates at the heart of these mechanisms.

Analogy

Think of nucleophiles and electrophiles like puzzle pieces: nucleophiles have an electron-rich "protrusion" (a lone pair or negative charge), while electrophiles have an electron-deficient "gap" (a partial or full positive charge). When they meet, they fit together by forming a new covalent bond.

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