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| Content Provider | PubMed Central |
|---|---|
| Author | Park, Young Jun Cook, Sarah A. Sickerman, Nathaniel S. Sano, Yohei Ziller, Joseph W. Borovik, A. S. |
| Abstract | The effects of redox-inactive metal ions on dioxygen activation were explored using a new FeII complex containing a tripodal ligand with 3 sulfonamido groups. This iron complex exhibited a faster initial rate for the reduction of O2 than its MnII analog. Increases in initial rates were also observed in the presence of group 2 metal ions for both the FeII and MnII complexes, which followed the trend NMe4 + < BaII < CaII = SrII. These studies led to the isolation of heterobimetallic complexes containing FeIII-(μ-OH)-MII cores (MII = Ca, Sr, and Ba) and one with a [SrII(OH)MnIII]+ motif. The analogous [CaII(OH)GaIII]+ complex was also prepared and its solid state molecular structure is nearly identical to that of the [CaII(OH)FeIII]+ system. Nuclear magnetic resonance studies indicated that the diamagnetic [CaII(OH)GaIII]+ complex retained its structure in solution. Electrochemical measurements on the heterobimetallic systems revealed similar one-electron reduction potentials for the [CaII(OH)FeIII]+ and [SrII(OH)FeIII]+ complexes, which were more positive than the potential observed for [BaII(OH)FeIII]+. Similar results were obtained for the heterobimetallic MnII complexes. These findings suggest that Lewis acidity is not the only factor to consider when evaluating the effects of group 2 ions on redox processes, including those within the oxygen-evolving complex of Photosystem II. |
| Related Links | http://dx.doi.org/10.1039/C2SC21400H |
| Ending Page | 726 |
| Page Count | 10 |
| Starting Page | 717 |
| File Format | |
| ISSN | 20416539 |
| e-ISSN | 20416539 |
| Journal | Chemical science (Royal Society of Chemistry : 2010) |
| Issue Number | 2 |
| Volume Number | 4 |
| Language | English |
| Publisher Date | 2013-02-01 |
| Access Restriction | Open |
| Subject Keyword | Research in Higher Education |
| Content Type | Text |
| Resource Type | Article |
| Subject | Chemistry |
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