Water oxidation at hematite photoelectrodes: the role of surface states B Klahr, S Gimenez, F Fabregat-Santiago, T Hamann, J Bisquert Journal of the American Chemical Society 134 (9), 4294-4302, 2012 | 1052 | 2012 |
Advancing beyond current generation dye-sensitized solar cells TW Hamann, RA Jensen, ABF Martinson, H Van Ryswyk, JT Hupp Energy & Environmental Science 1 (1), 66-78, 2008 | 871 | 2008 |
Recent Advances and Challenges of Electrocatalytic N2 Reduction to Ammonia G Qing, R Ghazfar, ST Jackowski, F Habibzadeh, MM Ashtiani, CP Chen, ... Chemical reviews 120 (12), 5437-5516, 2020 | 816 | 2020 |
Photoelectrochemical and impedance spectroscopic investigation of water oxidation with “Co–Pi”-coated hematite electrodes B Klahr, S Gimenez, F Fabregat-Santiago, J Bisquert, TW Hamann Journal of the American chemical society 134 (40), 16693-16700, 2012 | 703 | 2012 |
Electrochemical and photoelectrochemical investigation of water oxidation with hematite electrodes B Klahr, S Gimenez, F Fabregat-Santiago, J Bisquert, TW Hamann Energy & Environmental Science 5 (6), 7626-7636, 2012 | 517 | 2012 |
Determination of photoelectrochemical water oxidation intermediates on haematite electrode surfaces using operando infrared spectroscopy O Zandi, TW Hamann Nature chemistry 8 (8), 778-783, 2016 | 393 | 2016 |
New Architectures for Dye‐Sensitized Solar Cells ABF Martinson, TW Hamann, MJ Pellin, JT Hupp Chemistry–A European Journal 14 (15), 4458-4467, 2008 | 359 | 2008 |
Atomic layer deposition of a submonolayer catalyst for the enhanced photoelectrochemical performance of water oxidation with hematite SC Riha, BM Klahr, EC Tyo, S Seifert, S Vajda, MJ Pellin, TW Hamann, ... Acs Nano 7 (3), 2396-2405, 2013 | 286 | 2013 |
Performance enhancement and limitations of cobalt bipyridyl redox shuttles in dye-sensitized solar cells BM Klahr, TW Hamann The Journal of Physical Chemistry C 113 (31), 14040-14045, 2009 | 267 | 2009 |
Enhanced water splitting efficiency through selective surface state removal O Zandi, TW Hamann The journal of physical chemistry letters 5 (9), 1522-1526, 2014 | 256 | 2014 |
Dye-sensitized solar cell redox shuttles TW Hamann, JW Ondersma Energy & Environmental Science 4 (2), 370-381, 2011 | 254 | 2011 |
Highly photoactive Ti-doped α-Fe 2 O 3 thin film electrodes: resurrection of the dead layer O Zandi, BM Klahr, TW Hamann Energy & Environmental Science 6 (2), 634-642, 2013 | 252 | 2013 |
Thin film photoelectrodes for solar water splitting Y He, T Hamann, D Wang Chemical Society Reviews 48 (7), 2182-2215, 2019 | 248 | 2019 |
Roadmap on solar water splitting: current status and future prospects S Chu, W Li, Y Yan, T Hamann, I Shih, D Wang, Z Mi Nano Futures 1 (2), 022001, 2017 | 229 | 2017 |
Photoelectrochemical investigation of ultrathin film iron oxide solar cells prepared by atomic layer deposition BM Klahr, ABF Martinson, TW Hamann Langmuir 27 (1), 461-468, 2011 | 227 | 2011 |
Outer-sphere redox couples as shuttles in dye-sensitized solar cells. Performance enhancement based on photoelectrode modification via atomic layer deposition TW Hamann, OK Farha, JT Hupp The Journal of Physical Chemistry C 112 (49), 19756-19764, 2008 | 211 | 2008 |
Splitting water with rust: hematite photoelectrochemistry TW Hamann Dalton Transactions 41 (26), 7830-7834, 2012 | 194 | 2012 |
Water oxidation on hematite photoelectrodes: insight into the nature of surface states through in situ spectroelectrochemistry B Klahr, T Hamann The Journal of Physical Chemistry C 118 (19), 10393-10399, 2014 | 193 | 2014 |
Potential-sensing electrochemical atomic force microscopy for in operando analysis of water-splitting catalysts and interfaces MR Nellist, FAL Laskowski, J Qiu, H Hajibabaei, K Sivula, TW Hamann, ... Nature Energy 3 (1), 46-52, 2018 | 186 | 2018 |
Aerogel templated ZnO dye‐sensitized solar cells TW Hamann, ABF Martinson, JW Elam, MJ Pellin, JT Hupp Advanced Materials 20 (8), 1560-1564, 2008 | 177 | 2008 |