Items where Author is "Owen, Gareth R."
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Number of items: 8.
Article
TSOUREAS, Nikolaos, HAMILTON, Alexander, HADDOW, Mairi F., HARVEY, Jeremy N., ORPEN, A. Guy and OWEN, Gareth R.
(2013).
Insight into the hydrogen migration processes involved in the formation of metal–borane complexes : importance of the third arm of the scorpionate ligand.
Organometallics, 32 (9), 2840-2856.
[Article]
DYSON, Gavin, ZECH, Alexander, RAWE, Benjamin W., HADDOW, Mairi F., HAMILTON, Alexander and OWEN, Gareth R.
(2011).
Scorpionate ligands based on 2-Mercaptopyridine : a ligand with a greater propensity to sting?
Organometallics, 30 (21), 5844-5850.
[Article]
TSOUREAS, Nikolaos, NUNN, Joshua, BEVIS, Thomas, HADDOW, Mairi F., HAMILTON, Alex and OWEN, Gareth R.
(2011).
Strong agostic-type interactions in ruthenium benzylidene complexes containing 7-azaindole based scorpionate ligands.
Dalton Transactions, 40 (4), 951-958.
[Article]
OWEN, Gareth R., GOULD, P. Hugh, HAMILTON, Alexander and TSOUREAS, Nikolaos
(2010).
Unexpected pincer-type coordination (κ3-SBS) within a zerovalent platinum metallaboratrane complex.
Dalton Transactions, 39 (1), 49-52.
[Article]
OWEN, Gareth R., HUGH GOULD, P., CHARMANT, Jonathan P. H., HAMILTON, Alexander and SAITHONG, Saowanit
(2010).
A new hybrid scorpionate ligand : a study of the metal–boron bond within metallaboratrane complexes.
Dalton Transactions, 39 (2), 392-400.
[Article]
TSOUREAS, Nikolaos, BEVIS, Thomas, BUTTS, Craig P., HAMILTON, Alexander and OWEN, Gareth R.
(2009).
Further exploring the “Sting of the Scorpion” : hydride migration and subsequent rearrangement of Norbornadiene to Nortricyclyl on Rhodium(I).
Organometallics, 28 (17), 5222-5232.
[Article]
DYSON, Gavin, HAMILTON, Alexander, MITCHELL, Byron and OWEN, Gareth R.
(2009).
A new family of flexible scorpionate ligands based on 2-mercaptopyridine.
Dalton Transactions (31), p. 6120.
[Article]
TSOUREAS, Nikolaos, HADDOW, Mairi F., HAMILTON, Alexander and OWEN, Gareth R.
(2009).
A new family of metallaboratrane complexes based on 7-azaindole: B–H activation mediated by carbon monoxide.
Chemical Communications (18), 2538-2540.
[Article]