Sean E. Keuleyan, Ph.D.
Affiliations: | 2013 | Chemistry | University of Chicago, Chicago, IL |
Area:
Quantum Confined Semiconductors, Plasmonic Metal NanoparticlesGoogle:
"Sean Keuleyan"Mean distance: 13.54 | S | N | B | C | P |
Parents
Sign in to add mentorPhilippe Guyot-Sionnest | grad student | 2013 | Chicago | |
(Mid-infrared mercury chalcogenide colloidal quantum dots.) |
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Publications
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Martinez B, Livache C, Mouafo Notemgnou LD, et al. (2017) HgSe self-doped nanocrystals as a platform to investigate the effects of vanishing confinement. Acs Applied Materials & Interfaces |
Livache C, Izquierdo E, Martinez B, et al. (2017) Charge dynamics and optolectronic properties in HgTe colloidal quantum wells. Nano Letters |
Izquierdo E, Robin A, Keuleyan S, et al. (2016) Strongly confined HgTe 2D nanoplatelets as narrow near infrared emitters. Journal of the American Chemical Society |
Jeong KS, Deng Z, Keuleyan S, et al. (2014) Air-Stable n-Doped Colloidal HgS Quantum Dots. The Journal of Physical Chemistry Letters. 5: 1139-43 |
Keuleyan SE, Guyot-Sionnest P, Delerue C, et al. (2014) Mercury telluride colloidal quantum dots: electronic structure, size-dependent spectra, and photocurrent detection up to 12 μm. Acs Nano. 8: 8676-82 |
Lhuillier E, Keuleyan S, Guyot-Sionnest P. (2014) Corrigendum: Optical properties of HgTe colloidal quantum dots (2012 Nanotechnology 23 175705) Nanotechnology. 25: 189501 |
Keuleyan S, Kohler J, Guyot-Sionnest P. (2014) Photoluminescence of mid-infrared HgTe colloidal quantum dots Journal of Physical Chemistry C. 118: 2749-2753 |
Lhuillier E, Keuleyan S, Zolotavin P, et al. (2013) Mid-infrared HgTe/As2S3 field effect transistors and photodetectors. Advanced Materials (Deerfield Beach, Fla.). 25: 137-41 |
Lhuillier E, Keuleyan S, Liu H, et al. (2013) Mid-IR colloidal nanocrystals Chemistry of Materials. 25: 1272-1282 |
Lhuillier E, Keuleyan S, Guyot-Sionnest P. (2013) Colloidal quantum dots for mid-IR applications Infrared Physics and Technology. 59: 133-136 |