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Daniel G. Nocera grad student 2012 MIT
 (O-O bond formation and the transition metal chemistry of [beta]-diketiminate, siloxide, and triamide ligands)
Alán Aspuru-Guzik post-doc 2015 Harvard
Michael J. Aziz post-doc 2015 Harvard (Physics Tree)
Roy Gerald Gordon post-doc 2015 Harvard
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Publications

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Waters SE, Davis CM, Thurston JR, et al. (2022) Maximizing Vanadium Deployment in Redox Flow Batteries Through Chelation. Journal of the American Chemical Society. 144: 17753-17757
Maurer LA, Pearce OM, Maharaj FDR, et al. (2021) Open for Bismuth: Main Group Metal-to-Ligand Charge Transfer. Inorganic Chemistry
Robb BH, Waters SE, Marshak MP. (2020) Evaluating aqueous flow battery electrolytes: a coordinated approach. Dalton Transactions (Cambridge, England : 2003). 49: 16047-16053
Maharaj FDR, Marshak MP. (2020) Titanium-Anthraquinone Material as a New Design Approach for Electrodes in Aqueous Rechargeable Batteries Energies. 13: 1722
Waters SE, Robb BH, Marshak MP. (2020) Effect of Chelation on Iron–Chromium Redox Flow Batteries Acs Energy Letters. 5: 1758-1762
Krajewski SM, Crossman AS, Akturk ES, et al. (2019) Sterically encumbered β-diketonates and base metal catalysis. Dalton Transactions (Cambridge, England : 2003)
Crossman AS, Larson AT, Shi JX, et al. (2019) Synthesis of Sterically Hindered β-Diketones via Condensation of Acid Chlorides with Enolates. The Journal of Organic Chemistry
Maharaj FDR, Wu W, Zhou Y, et al. (2019) Exploring Real-World Applications of Electrochemistry by Constructing a Rechargeable Lithium-Ion Battery Journal of Chemical Education. 96: 3014-3017
Robb BH, Farrell JM, Marshak MP. (2019) Chelated Chromium Electrolyte Enabling High-Voltage Aqueous Flow Batteries Joule. 3: 2503-2512
Akturk ES, Scappaticci SJ, Seals RN, et al. (2017) Bulky β-Diketones Enabling New Lewis Acidic Ligand Platforms. Inorganic Chemistry
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