Cyclo-dehydrogenation

Cyclo-dehydrogenation is a chemical reaction that converts appropriately arranged aromatic or unsaturated precursors into cyclic, more highly conjugated structures by forming new carbon–carbon bonds and removing hydrogen. Typically, the process involves sequential C–H bond activation, intramolecular ring closure, and oxidative dehydrogenation, with hydrogen removed as H₂ or captured by an oxidizing agent. In chemistry, cyclo-dehydrogenation provides a direct route to fused aromatic systems, polycyclic aromatic hydrocarbons, and other rigid π-conjugated molecules. These products support research in organic synthesis, materials chemistry, molecular electronics, and the construction of graphene-like nanostructures.

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