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Dr. Beratan is developing theoretical approaches to understand the function of complex molecular and macromolecular systems, including: the molecular underpinnings of energy harvesting and charge transport in biology; the mechanism of solar energy capture and conversion in man-made structures; the nature of charge conductivity in naturally occurring nucleic acids and in synthetic constructs, including the photochemical repair of damaged DNA in extremophiles; CH bond activation by copper oxygenase enzymes; the flow of charge in bacterial appendages on the micrometer length scale; the theoretical foundations for inverse molecular design - the property driven discovery of chemical structures with optimal properties; the exploitation of molecular diversity in the mapping of molecular and materials "space"; the use of infra-red excitation to manipulate electron transport through molecules; the optical signatures of molecular chirality and the influence of chirality on charge transport. Prof. Beratan is affiliated with the Departments of Chemistry, Biochemistry, Physics, as well as Duke's programs in Computational Biology and Bioinformatics, Structural Biology and Biophysics, Nanosciences, and Phononics.
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The Journal of Physical Chemistry C (2024)
Rui Sun,Kyung Sun Park,Andrew H. Comstock, Aeron Mcconnell, Yen-Chi Chen,Peng Zhang,David Beratan,Wei You,Axel Hoffmann,Zhi-Gang Yu,Ying Diao,Dali Sun
NATURE MATERIALS (2024)
Rui Sun,Kyung Sun Park,Andrew H. Comstock, Aeron McConnell, Yen-Chi Chen, Peng Zhang,David Beratan,Wei You,Axel Hoffmann,Zhi-Gang Yu,Ying Diao,Dali Sun
Nature Materialspp.1-8, (2024)
PHYSICAL CHEMISTRY CHEMICAL PHYSICSno. 3 (2024): 1819-1828
SCIENTIFIC REPORTSno. 1 (2024): 336-336
NATURE REVIEWS CHEMISTRYpp.1-19, (2024)
Biophysical journalno. 10 (2023): 1762-1771
The journal of physical chemistry lettersno. 26 (2023): 6071-6077
Research Square (Research Square) (2023)
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The journal of physical chemistry. Bno. 13 (2023): 2941-2954
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