Wendu Ding, Ph.D.

Affiliations: 
2011-2016 Chemistry Yale University, New Haven, CT 
 2016- Chemistry Northwestern University, Evanston, IL 
Area:
molecular rectification, energy transfer
Website:
http://sites.northwestern.edu/schatz/publications/
Google:
"Wendu Ding"
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Parents

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Victor S. Batista grad student 2011-2016 Yale
 (Electron Transport in Single Molecules: Theoretical Study and Design of Intrinsic Molecular Rectifiers)
George C. Schatz post-doc 2016- Northwestern
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Publications

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Weng SH, Hsu LY, Ding W. (2023) Exploring plasmonic effect on exciton transport: A theoretical insight from macroscopic quantum electrodynamics. The Journal of Chemical Physics. 159
Limaye AM, Ding W, Willard AP. (2020) Understanding attenuated solvent reorganization energies near electrode interfaces. The Journal of Chemical Physics. 152: 114706
Liu J, Wang W, Wang D, et al. (2019) Spatially defined molecular emitters coupled to plasmonic nanoparticle arrays. Proceedings of the National Academy of Sciences of the United States of America
Nasiri Avanaki K, Ding W, Schatz GC. (2018) Resonance Energy Transfer in Arbitrary Media: Beyond the Point Dipole Approximation The Journal of Physical Chemistry C. 122: 29445-29456
Ding W, Hsu L, Heaps CW, et al. (2018) Plasmon-Coupled Resonance Energy Transfer II: Exploring the Peaks and Dips in the Electromagnetic Coupling Factor The Journal of Physical Chemistry C. 122: 22650-22659
Kirschner MS, Ding W, Li Y, et al. (2017) Phonon-Driven Oscillatory Plasmonic Excitonic Nanomaterials. Nano Letters
Hsu LY, Ding W, Schatz GC. (2017) Plasmon-Coupled Resonance Energy Transfer. The Journal of Physical Chemistry Letters
Ding W, Hsu LY, Schatz GC. (2017) Plasmon-coupled resonance energy transfer: A real-time electrodynamics approach. The Journal of Chemical Physics. 146: 064109
Wu Y, Rudshteyn B, Zhanaidarova A, et al. (2017) Electrode-Ligand Interactions Dramatically Enhance CO2 Conversion to CO by the [Ni(cyclam)](PF6)2 Catalyst Acs Catalysis. 7: 5282-5288
Koepf M, Koenigsmann C, Ding W, et al. (2016) Controlling the rectification properties of molecular junctions through molecule-electrode coupling. Nanoscale. 8: 16357-16362
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