Yagnaseni Ghosh, PhD

Affiliations: 
2004-2009 Chemistry Ohio State University, Columbus, Columbus, OH 
Area:
Inorganic and materials chemistry
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"Yagnaseni Ghosh"

Parents

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Malcolm 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
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