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III. Photochemically Generated Radicals

  • Page ID
    23813

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    Although, as described in Chapter 2, photolysis sometimes initiates chain reactions, it also can produce radicals that undergo nonchain reactions. In a photo­chem­ically initiated chain reaction the number of photons that must be absorbed to cause complete reaction typically is far smaller than the number of molecules reacted. (A radical formed by absorption of one photon can begin a chain that produces many product molecules.) In a nonchain reaction the number of photons absorbed typically must be at least equal to the number of mole­cules reacted. Actually, it is rare that each, absorbed photon causes a reaction to take place because reaction is only one of the ways an excited molecule dissipates its energy; consequently, for com­plete reaction to occur in a non­chain process the number of photons absorbed often greatly exceeds the number of molecules reacted.

    Although cleavage of weak carbon–metal bonds (e.g., carbon–cobalt bonds) tends to occur readily upon photolysis, photochemical processes do not require a reactant to have a weak bond in order for bond homolysis to take place. When ultraviolet light is absorbed by a compound, enough energy is present in the excited system to break even strong bonds.


    This page titled III. Photochemically Generated Radicals is shared under a All Rights Reserved (used with permission) license and was authored, remixed, and/or curated by Roger W. Binkley and Edith R. Binkley.

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