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Michael R Norris

Affiliations: 
University of Richmond, Richmond, VA, United States 
Area:
Synthesis, Inorganic, Electrochemistry
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"Michael Norris"
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Publications

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Paul L, Enkhbold K, Robinson S, et al. (2022) Unravelling the role of [Ru(bpy)(OH)] complexes in photo-activated chemotherapy. Journal of Inorganic Biochemistry. 235: 111930
Brennaman MK, Gish MK, Alibabaei L, et al. (2018) Pathways Following Electron Injection: Medium Effects and Cross-Surface Electron Transfer in a Ruthenium-Based, Chromophore–Catalyst Assembly on TiO2 The Journal of Physical Chemistry C. 122: 13017-13026
Norris MR, Flowers SE, Mathews AM, et al. (2016) H2 Production Mediated by CO2 via Initial Reduction to Formate Organometallics. 35: 2778-2781
Brennaman MK, Norris MR, Gish MK, et al. (2015) Ultrafast, Light-Induced Electron Transfer in a Perylene Diimide Chromophore-Donor Assembly Synthesized at the TiO2 Interface. The Journal of Physical Chemistry Letters
Alibabaei L, Sherman BD, Norris MR, et al. (2015) Visible photoelectrochemical water splitting into H2 and O2 in a dye-sensitized photoelectrosynthesis cell. Proceedings of the National Academy of Sciences of the United States of America. 112: 5899-902
Hyde JT, Hanson K, Vannucci AK, et al. (2015) Electrochemical Instability of Phosphonate-Derivatized, Ruthenium(III) Polypyridyl Complexes on Metal Oxide Surfaces. Acs Applied Materials & Interfaces. 7: 9554-62
Norris MR, Cossairt BM. (2015) CdSe on a mesoporous transparent conducting oxide scaffold as a photocathode Journal of Materials Chemistry A. 3: 14585-14591
Ashford DL, Glasson CR, Norris MR, et al. (2014) Controlling ground and excited state properties through ligand changes in ruthenium polypyridyl complexes. Inorganic Chemistry. 53: 5637-46
Norris MR, Concepcion JJ, Fang Z, et al. (2013) Low-overpotential water oxidation by a surface-bound ruthenium-chromophore-ruthenium-catalyst assembly. Angewandte Chemie (International Ed. in English). 52: 13580-3
Alibabaei L, Brennaman MK, Norris MR, et al. (2013) Solar water splitting in a molecular photoelectrochemical cell. Proceedings of the National Academy of Sciences of the United States of America. 110: 20008-13
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