The FeIV-O• oxyl unit as a key intermediate in water oxidation on the FeIII-hydroxide: DFT predictions

  • Shubin, Aleksandr A.; 
  • Kovalskii, Viktor Yu.; 
  • Ruzankin, Sergey Ph.; 
  • Zilberberg, Igor L.; 
  • Parmon, Valentin N.; 
  • 외 2명
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SCOPUS

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초록

The O-O coupling process in water oxidation on the gamma FeOOH hydroxide catalyst is simulated by means of density functional theory using model iron cubane cluster Fe4O4(OH)(4). A key reactive intermediate is proposed to be the HO-Fe-IV-O center dot oxyl unit with terminal oxo radical. The "initial" vertex Fe-III(OH) moiety forms this intermediate at the calculated overpotential of 0.93 V by adding one water molecule and withdrawing two proton-electron pairs. The O-O coupling goes via water nucleophilic attack on the oxyl oxygen to form the O-O bond with a remarkably low barrier of 11 kcal/mol. This process is far more effective than alternative scenario based on direct interaction of two ferryl Fe-IV(sic)O sites (with estimated barrier of 36 kcal/mol) and is comparable with the coupling between terminal oxo center and three-coordinated lattice oxo center (12 kcal/mol barrier). The process of hydroxylation of terminal oxygen inhibits the O-O coupling. Nevertheless, being more effective for ferryl oxygen, the hydroxylation in fact enhances selectivity of the O-O coupling initiated by the oxyl oxygen.

키워드

negative spin density; oxyl oxygen; the FeOOH hydroxide; the O O coupling; water oxidation; MECHANISM; ELECTROLYSIS
제목
The FeIV-O• oxyl unit as a key intermediate in water oxidation on the FeIII-hydroxide: DFT predictions
저자
Shubin, Aleksandr A.; Kovalskii, Viktor Yu.; Ruzankin, Sergey Ph.; Zilberberg, Igor L.; Parmon, Valentin N.; Tomilin, Felix N.; Avramov, Pavel V.
DOI
10.1002/qua.26610
발행일
2021-05-15
유형
Article
저널명
International Journal of Quantum Chemistry
권
121
호
10