1999
DOI: 10.1021/ja990921d
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Rearrangements of Radical Ions:  What It Means To Be Both a Radical and an Ion

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Cited by 68 publications
(52 citation statements)
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“…Recent research, notably by Tanko and co-workers, has shown that this assumption is not valid as both charge and spin are governing factors in the reactivity of radicalanion rearrangements. [2,3] There are a number of examples involving the rearrangements of radical anions in which bond cleavage results in formation of a single species containing a spatially separated radical and anion [Eq. (1)].…”
Section: Introductionmentioning
confidence: 99%
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“…Recent research, notably by Tanko and co-workers, has shown that this assumption is not valid as both charge and spin are governing factors in the reactivity of radicalanion rearrangements. [2,3] There are a number of examples involving the rearrangements of radical anions in which bond cleavage results in formation of a single species containing a spatially separated radical and anion [Eq. (1)].…”
Section: Introductionmentioning
confidence: 99%
“…(1)]. [2][3][4][5] However, examples involving the fragmentation of a spatially separated radical anion yielding a localized radical anion and a neutral molecule are rather unknown [Eq. (2)].…”
Section: Introductionmentioning
confidence: 99%
“…However, a body of work by Tanko and coworkers has provided evidence that this assumption is not necessarily valid. [3][4][5][6] They demonstrated by electrochemically generating a series of cycloalkylketone radical anions that both charge and spin are governing factors in the reactivity of radical-anion rearrangements. The radical anions in these studies were observed to undergo a carbon-carbon bond fragmentation yielding a single species containing a spatially separated radical and anion, which is otherwise known as a distonic radical anion [Eq.…”
Section: Introductionmentioning
confidence: 99%
“…These studies have provided valuable thermodynamic and kinetic information using various electrochemical techniques and application of SavØants theory of dissociative ET. [34,35] The reduction of alkyl-substituted endoperoxides was shown to occur by a concerted dissociative ET mechanism followed by subsequent reduction and protonation as in Equations (3) and (4). [18,19] By this mechanism, ET is concomitant with O À O bond cleavage to form a distonic radical anion [Eq.…”
Section: Introductionmentioning
confidence: 99%
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