Yagnaseni Ghosh, PhD
Affiliations: | 2004-2009 | Chemistry | Ohio State University, Columbus, Columbus, OH |
Area:
Inorganic and materials chemistryGoogle:
"Yagnaseni Ghosh"Parents
Sign in to add mentorMalcolm H. Chisholm | grad student | 2004-2009 | Ohio State | |
(The most nurturing, encouraging and compassionate advisor a grad student could ask for) | ||||
Jennifer Hollingsworth | post-doc | 2010-2013 | LANL |
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Publications
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Sampat S, Guo T, Zhang K, et al. (2016) Exciton and Trion Energy Transfer from Giant Semiconductor Nanocrystals to MoS2 Monolayers Acs Photonics. 3: 708-715 |
Karan NS, Keller AM, Sampat S, et al. (2015) Plasmonic giant quantum dots: hybrid nanostructures for truly simultaneous optical imaging, photothermal effect and thermometry. Chemical Science. 6: 2224-false |
Wang F, Karan NS, Nguyen HM, et al. (2015) Quantum Dots: Quantum Optical Signature of Plasmonically Coupled Nanocrystal Quantum Dots (Small 38/2015). Small (Weinheim An Der Bergstrasse, Germany). 11: 5176 |
Wang F, Karan NS, Minh Nguyen H, et al. (2015) Coupling Single Giant Nanocrystal Quantum Dots to the Fundamental Mode of Patch Nanoantennas through Fringe Field. Scientific Reports. 5: 14313 |
Wang F, Karan NS, Nguyen HM, et al. (2015) Quantum Optical Signature of Plasmonically Coupled Nanocrystal Quantum Dots. Small (Weinheim An Der Bergstrasse, Germany) |
Wang F, Karan NS, Nguyen HM, et al. (2015) Correlated structural-optical study of single nanocrystals in a gap-bar antenna: effects of plasmonics on excitonic recombination pathways. Nanoscale. 7: 9387-93 |
DeVore MS, Stich DG, Keller AM, et al. (2015) Three dimensional time-gated tracking of non-blinking quantum dots in live cells. Proceedings of Spie--the International Society For Optical Engineering. 9338 |
Sampat S, Karan NS, Keller AM, et al. (2015) Plasmonic giant semiconductor nanocrystals with enhanced light output and suppressed blinking for biomedical applications Cleo: Qels - Fundamental Science, Cleo_qels 2015. 1551p |
Gao Y, Roslyak O, Dervishi E, et al. (2015) Plasmonics: Hybrid Graphene-Giant Nanocrystal Quantum Dot Assemblies with Highly Efficient Biexciton Emission (Advanced Optical Materials 1/2015) Advanced Optical Materials. 3: 2-2 |
Gao Y, Roslyak O, Dervishi E, et al. (2015) Hybrid Graphene-Giant Nanocrystal Quantum Dot Assemblies with Highly Efficient Biexciton Emission Advanced Optical Materials. 3: 39-43 |