Alexander A. Balaeff, Ph.D.

Affiliations: 
1994-2002 Biophysics University of Illinois, Urbana-Champaign, Urbana-Champaign, IL 
 2005-2012 Chemistry Duke University, Durham, NC 
 2012-2017 NanoScience Technology Center University of Central Florida, Orlando, FL, United States 
 2018- NewLeaf Symbiotics 
Area:
theoretical and computational biophysics/biochemistry/biology
Website:
https://newleafsym.com/team_member/alexander-balaeff/
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SNBCP

Parents

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Yuri P. Lysov research assistant 1992-1994 Engelhardt Institute of Molecular Biology
Klaus Schulten grad student 2002 UIUC
 (Application of the theory of elasticity to modeling of protein -DNA interactions.)
David N. Beratan post-doc 2005-2012 Duke
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Publications

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Stancescu M, Fedotova TA, Hooyberghs J, et al. (2016) Non-Equilibrium Hybridization Enables Discrimination of a Point Mutation within 5-40oC. Journal of the American Chemical Society
Ignatova T, Balaeff A, Blades M, et al. (2016) Two-color spectroscopy of UV excited ssDNA complex with a single-wall nanotube photoluminescence probe: Fast relaxation by nucleobase autoionization mechanism Nano Research. 1-13
Zhang Y, Zhang WB, Liu C, et al. (2015) DNA charge transport: Moving beyond 1D Surface Science
Zhang Y, Liu C, Balaeff A, et al. (2014) Biological charge transfer via flickering resonance. Proceedings of the National Academy of Sciences of the United States of America. 111: 10049-54
Wierzbinski E, de Leon A, Yin X, et al. (2012) Effect of backbone flexibility on charge transfer rates in peptide nucleic acid duplexes. Journal of the American Chemical Society. 134: 9335-42
Balaeff A, Craig SL, Beratan DN. (2011) B-DNA to zip-DNA: simulating a DNA transition to a novel structure with enhanced charge-transport characteristics. The Journal of Physical Chemistry. A. 115: 9377-91
Venkatramani R, Keinan S, Balaeff A, et al. (2011) Nucleic Acid Charge Transfer: Black, White and Gray. Coordination Chemistry Reviews. 255: 635-648
Venkatramani R, Davis KL, Wierzbinski E, et al. (2011) Evidence for a near-resonant charge transfer mechanism for double-stranded peptide nucleic acid. Journal of the American Chemical Society. 133: 62-72
Wolak MA, Balaeff A, Gutmann S, et al. (2011) Electronic structure of self-assembled peptide nucleic acid thin films Journal of Physical Chemistry C. 115: 17123-17135
Keinan S, Venkatramani R, Balaeff A, et al. (2010) Is MD geometry sampling sufficient for nucleobase electronic structure analysis of et reactions? Comparing classical MD and QM/MM methods Journal of Physical Chemistry C. 114: 20496-20502
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