The coordination chemistry of organo-hydride donors: new prospects for efficient multi-electron reduction A McSkimming, SB Colbran Chemical Society Reviews 42 (12), 5439-5488, 2013 | 153 | 2013 |
Chemical and electrochemical syntheses, and characterization of poly (2, 5-dimethoxyaniline)(PDMA): a novel, soluble, conducting polymer GD Storrier, SB Colbran, DB Hibbert Synthetic Metals 62 (2), 179-186, 1994 | 71 | 1994 |
Ruthenium phthalocyanine-bipyridyl dyads as sensitizers for dye-sensitized solar cells: dye coverage versus molecular efficiency T Rawling, C Austin, F Buchholz, SB Colbran, AM McDonagh Inorganic chemistry 48 (7), 3215-3227, 2009 | 70 | 2009 |
Bis [4′-(4-anilino)-2, 2′∶ 6′, 2 ″-terpyridine] transition-metal complexes: electrochemically active monomers with a range of magnetic and optical properties for assembly … GD Storrier, SB Colbran, DC Craig Journal of the Chemical Society, Dalton Transactions, 3011-3028, 1997 | 70 | 1997 |
Electron transfer in organometallic clusters. 2. Ferrocene-tricobalt carbon cluster compounds with multiple redox sites SB Colbran, BH Robinson, J Simpson Organometallics 2 (8), 943-951, 1983 | 70 | 1983 |
Could Redox‐Switched Binding of a Redox‐Active Ligand to a Copper(II) Centre Drive a Conformational Proton Pump Gate? A Synthetic Model Study Z He, SB Colbran, DC Craig Chemistry–A European Journal 9 (1), 116-129, 2003 | 53 | 2003 |
Tridentate pyridine–pyrrolide chelate ligands: An under-appreciated ligand set with an immensely promising coordination chemistry JN McPherson, B Das, SB Colbran Coordination Chemistry Reviews 375, 285-332, 2018 | 52 | 2018 |
Optical and redox properties of ruthenium phthalocyanine complexes tuned with axial ligand substituents T Rawling, H Xiao, ST Lee, SB Colbran, AM McDonagh Inorganic chemistry 46 (7), 2805-2813, 2007 | 52 | 2007 |
Structural features of molecular electrocatalysts in multi-electron redox processes for renewable energy–recent advances B Das, A Thapper, S Ott, SB Colbran Sustainable Energy & Fuels 3 (9), 2159-2175, 2019 | 47 | 2019 |
Covalently linked ferrocenyl quinones: Proton-dependent redox behavior and charge redistribution SB Colbran, ST Lee, DG Lonnon, FJD Maharaj, AM McDonagh, ... Organometallics 25 (9), 2216-2224, 2006 | 47 | 2006 |
Complexes of New Electrochemically-Active p-Quinonyl-/p-hydroquinonylphosphines: Multiple Electron/Proton Transfer Reactions and Electrochemical/pH Control of p-Quinonyl-/p … SB Sembiring, SB Colbran, DC Craig Inorganic Chemistry 34 (4), 761-762, 1995 | 46 | 1995 |
Systematic synthesis and characterisation of phosphido-bridged triosmium carbonyl clusters SB Colbran, BFG Johnson, J Lewis, RM Sorrell Journal of organometallic chemistry 296 (1-2), c1-c5, 1985 | 42 | 1985 |
Electron transfer in organometallic clusters. 3. Electron transfer and mixed-valence properties of substituted ferrocene-tricobalt carbon clusters SB Colbran, BH Robinson, J Simpson Organometallics 2 (8), 952-957, 1983 | 42 | 1983 |
Transition-metal complexes of terpyridine ligands with hydroquinone or quinone substituents GD Storrier, SB Colbran, DC Craig Journal of the Chemical Society, Dalton Transactions, 1351-1364, 1998 | 41 | 1998 |
Low Oxidation State Iron (0), Iron (I), and Ruthenium (0) Dinitrogen Complexes with a Very Bulky Neutral Phosphine Ligand R Gilbert-Wilson, LD Field, SB Colbran, MM Bhadbhade Inorganic Chemistry 52 (6), 3043-3053, 2013 | 39 | 2013 |
Bridgehead Hydrogen Atoms Are Important: Unusual Electrochemistry and Proton Reduction at Iron Dimers with Ferrocenyl-Substituted Phosphido Bridges C Gimbert-Suriñach, M Bhadbhade, SB Colbran Organometallics 31 (9), 3480-3491, 2012 | 38 | 2012 |
Electron transfer in organometallic clusters. 7. Bis (. mu. 3-carbyne) clusters of cobalt including ferrocene derivatives SB Colbran, BH Robinson, J Simpson Organometallics 3 (9), 1344-1353, 1984 | 37 | 1984 |
Structures and properties of 6-aryl substituted tris (2-pyridylmethyl) amine transition metal complexes Z He, DC Craig, SB Colbran Journal of the Chemical Society, Dalton Transactions, 4224-4235, 2002 | 36 | 2002 |
Predictable Substituent Control of CoIII/II Redox Potential and Spin Crossover in Bis(dipyridylpyrrolide)cobalt Complexes JN McPherson, RW Hogue, FS Akogun, L Bondi, ET Luis, JR Price, ... Inorganic chemistry 58 (3), 2218-2228, 2019 | 35 | 2019 |
Bio-inspired catalytic imine reduction by rhodium complexes with tethered Hantzsch pyridinium groups: evidence for direct hydride transfer from dihydropyridine to metal … A McSkimming, MM Bhadbhade, SB Colbran Angewandte Chemie 125 (12), 2013 | 35 | 2013 |