How Do Proximal Hydroxy or Methoxy Groups on the Bidentate Ligand Affect [(2, 2′;6′, 2"‐Terpyridine)Ru(N, N)X] Water‐Oxidation Catalysts? Synthesis, Characterization, and Reactivity at Acidic and Near‐Neutral pH. Issue 4 (18th October 2013)
- Record Type:
- Journal Article
- Title:
- How Do Proximal Hydroxy or Methoxy Groups on the Bidentate Ligand Affect [(2, 2′;6′, 2"‐Terpyridine)Ru(N, N)X] Water‐Oxidation Catalysts? Synthesis, Characterization, and Reactivity at Acidic and Near‐Neutral pH. Issue 4 (18th October 2013)
- Main Title:
- How Do Proximal Hydroxy or Methoxy Groups on the Bidentate Ligand Affect [(2, 2′;6′, 2"‐Terpyridine)Ru(N, N)X] Water‐Oxidation Catalysts? Synthesis, Characterization, and Reactivity at Acidic and Near‐Neutral pH
- Authors:
- Marelius, David C.
Bhagan, Salome
Charboneau, David J.
Schroeder, Kristine M.
Kamdar, Jayneil M.
McGettigan, Amanda R.
Freeman, Benjamin J.
Moore, Curtis E.
Rheingold, Arnold L.
Cooksy, Andrew L.
Smith, Diane K.
Paul, Jared J.
Papish, Elizabeth T.
Grotjahn, Douglas B. - Other Names:
- Hetterscheid Dennis G. H. sponsoringEditor.
Sun Licheng sponsoringEditor. - Abstract:
- Abstract: Water‐oxidation catalysts (WOCs) can potentially be improved by installing pendant electron‐donor groups that may also be proton donors or acceptors. We have modified one of the most well‐studied WOCs with alkoxy or hydroxy substituents on the bidentate bipyridine ligand (N, N), thereby forming [(terpy)Ru II (N, N)X] (X = Cl, H2 O; terpy = 2, 2′;6′, 2"‐terpyridine). A combination of NMR spectroscopy (particularly 15 N chemical‐shift data), UV/Vis spectroscopy, X‐ray diffraction, and oxygen evolution data point to interesting and beneficial effects of an oxygenated group proximal to X. A methoxy group on the 2, 2′‐bipyridyl (bipy) ring cis to X = Cl is shown to facilitate ionization of the chloride ligand in aqueous acetone, perhaps by acceptance of a hydrogen bond from the aquo ligand. Hydrogen‐bond donation of a proximal hydroxy group to a bound aquo ligand is shown by X‐ray diffraction. Distinct differences in p K a values for the 4, 4′‐ and 6, 6′‐dihydroxy bipy complexes are seen. In water oxidation driven by ceric ammonium nitrate, the 6, 6′‐dimethoxy species is somewhat faster and longer‐lived than the analogue that lacks the oxygenated groups [a turnover number (TON) of 215 instead of 138 in 10 h, and a turnover frequency (TOF) of 0.36 min –1 instead of 0.23 over the same time period]. Taken together, oxygenated groups near the WOC active site are promising electron or proton donors and/or hydrogen‐bond acceptors, and are the subject of further scrutiny.Abstract: Water‐oxidation catalysts (WOCs) can potentially be improved by installing pendant electron‐donor groups that may also be proton donors or acceptors. We have modified one of the most well‐studied WOCs with alkoxy or hydroxy substituents on the bidentate bipyridine ligand (N, N), thereby forming [(terpy)Ru II (N, N)X] (X = Cl, H2 O; terpy = 2, 2′;6′, 2"‐terpyridine). A combination of NMR spectroscopy (particularly 15 N chemical‐shift data), UV/Vis spectroscopy, X‐ray diffraction, and oxygen evolution data point to interesting and beneficial effects of an oxygenated group proximal to X. A methoxy group on the 2, 2′‐bipyridyl (bipy) ring cis to X = Cl is shown to facilitate ionization of the chloride ligand in aqueous acetone, perhaps by acceptance of a hydrogen bond from the aquo ligand. Hydrogen‐bond donation of a proximal hydroxy group to a bound aquo ligand is shown by X‐ray diffraction. Distinct differences in p K a values for the 4, 4′‐ and 6, 6′‐dihydroxy bipy complexes are seen. In water oxidation driven by ceric ammonium nitrate, the 6, 6′‐dimethoxy species is somewhat faster and longer‐lived than the analogue that lacks the oxygenated groups [a turnover number (TON) of 215 instead of 138 in 10 h, and a turnover frequency (TOF) of 0.36 min –1 instead of 0.23 over the same time period]. Taken together, oxygenated groups near the WOC active site are promising electron or proton donors and/or hydrogen‐bond acceptors, and are the subject of further scrutiny. Abstract : Oxygenated substituents (protic OH and aprotic OMe) are compared at positions near to (figure, left) and far from (figure, right) the active site of water‐oxidation catalysts. Facile aquation promoted by a proximal substituent, hydrogen bonding, and pH‐sensitive redox and UV/Vis spectra are seen, along with either enhanced or reduced catalytic rates. … (more)
- Is Part Of:
- European journal of inorganic chemistry. Issue 4(2014)
- Journal:
- European journal of inorganic chemistry
- Issue:
- Issue 4(2014)
- Issue Display:
- Volume 4, Issue 4 (2014)
- Year:
- 2014
- Volume:
- 4
- Issue:
- 4
- Issue Sort Value:
- 2014-0004-0004-0000
- Page Start:
- 676
- Page End:
- 689
- Publication Date:
- 2013-10-18
- Subjects:
- Oxidation -- Ruthenium -- Hydrogen bonds -- Acidity -- Ligand effects -- Water chemistry
Chemistry, Inorganic -- Periodicals
Organometallic chemistry -- Periodicals
Bioinorganic chemistry -- Periodicals
Solid state chemistry -- Periodicals
546 - Journal URLs:
- http://onlinelibrary.wiley.com/ ↗
- DOI:
- 10.1002/ejic.201300826 ↗
- Languages:
- English
- ISSNs:
- 1434-1948
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 3829.730450
British Library DSC - BLDSS-3PM
British Library STI - ELD Digital store - Ingest File:
- 219.xml