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Theodore A. Betley

Chemistry and Chemical Biology Harvard University, Cambridge, MA, United States 
Polynuclear complexes for cooperative redox chemistry
"Theodore Betley"

Mean distance: 7.45


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Mark M. Banaszak Holl research assistant 1997-1999 University of Michigan
Jonas C. Peters grad student 2005 Caltech
 (Coordination chemistry from trigonally coordinated iron platforms: chemistry relevant to dinitrogen reduction)
Daniel G. Nocera post-doc 2005-2007 MIT


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Dianne J. Xiao research assistant 2011 Harvard
Gabriel Ménard grad student
Emily V. Eames grad student 2012 Harvard
Evan R. King grad student 2012 Harvard
Elisabeth T. Hennessy grad student 2013 Harvard
Austin B. Scharf grad student 2013 Harvard
Raúl Hernández Sánchez grad student 2010-2015 Harvard
Christopher B Caputo post-doc Harvard
Alison R. Fout post-doc 2009-2012 Harvard
T. David Harris post-doc 2010-2012 Harvard
Alexandre Mikhailine post-doc 2013-2016 Harvard
BETA: Related publications


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Baek Y, Hennessy ET, Betley TA. (2019) Direct Manipulation of Metal Imido Geometry: Key Principles to Enhance C-H Amination Efficacy. Journal of the American Chemical Society
Bartholomew AK, Teesdale JJ, Hernández Sánchez R, et al. (2019) Exposing the inadequacy of redox formalisms by resolving redox inequivalence within isovalent clusters. Proceedings of the National Academy of Sciences of the United States of America
Baek Y, Betley TA. (2019) Catalytic C-H Amination Mediated by Dipyrrin Cobalt Imidos. Journal of the American Chemical Society
Betley TA, Bartholomew AK, Juda CE, et al. (2019) Ligand-based Control of Single-Site vs Multi-Site Reactivity by a Trichromium Cluster. Angewandte Chemie (International Ed. in English)
Hernández Sánchez R, Betley TA. (2018) Thermally persistent high spin ground states in octahedral iron clusters. Journal of the American Chemical Society
Betley TA, Iovan DA, Wilding MJT, et al. (2017) Diastereoselective C-H bond amination for disubstituted pyrrolidines. Angewandte Chemie (International Ed. in English)
Wilding MJT, Iovan DA, Wrobel AT, et al. (2017) Direct comparison of C-H bond amination efficacy through manipulation of nitrogen-valence centered redox: imido versus iminyl. Journal of the American Chemical Society
Iovan DA, Wrobel AT, McClelland AA, et al. (2017) Reactivity of a stable copper-dioxygen complex. Chemical Communications (Cambridge, England)
Wilding MJT, Iovan DA, Betley TA. (2017) High spin iron imido complexes competent for C-H bond amination. Journal of the American Chemical Society
Hernández Sánchez R, Bartholomew AK, Powers TM, et al. (2016) Maximizing electron exchange in a [Fe3] cluster. Journal of the American Chemical Society
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