Anisotropic Emission from Multilayered Plasmon Resonator Nanocomposites of Isotropic Semiconductor Quantum Dots
buir.contributor.author | Demir, Hilmi Volkan | |
buir.contributor.orcid | Demir, Hilmi Volkan|0000-0003-1793-112X | |
dc.citation.epage | 1334 | en_US |
dc.citation.issueNumber | 2 | en_US |
dc.citation.spage | 1328 | en_US |
dc.citation.volumeNumber | 5 | en_US |
dc.contributor.author | Ozel, T. | en_US |
dc.contributor.author | Nizamoglu, S. | en_US |
dc.contributor.author | Sefunc, M.A. | en_US |
dc.contributor.author | Samarskaya, O. | en_US |
dc.contributor.author | Ozel, I. O. | en_US |
dc.contributor.author | Mutlugun, E. | en_US |
dc.contributor.author | Lesnyak, V. | en_US |
dc.contributor.author | Gaponik N. | en_US |
dc.contributor.author | Eychmuller, A. | en_US |
dc.contributor.author | Gaponenko, S. V. | en_US |
dc.contributor.author | Demir, Hilmi Volkan | en_US |
dc.date.accessioned | 2015-07-28T12:06:00Z | |
dc.date.available | 2015-07-28T12:06:00Z | |
dc.date.issued | 2011-01-19 | en_US |
dc.department | Department of Physics | en_US |
dc.department | Department of Electrical and Electronics Engineering | en_US |
dc.department | Institute of Materials Science and Nanotechnology (UNAM) | en_US |
dc.description.abstract | We propose and demonstrate a nanocomposite localized surface plasmon resonator embedded into an artificial three-dimensional construction. Colloidal semiconductor quantum dots are assembled between layers of metal nanoparticles to create a highly strong plasmon-exciton interaction in the plasmonic cavity. In such a multilayered plasmonic resonator architecture of isotropic CdTe quantum dots, we observed polarized light emission of 80% in the vertical polarization with an enhancement factor of 4.4, resulting in a steady-state anisotropy value of 0.26 and reaching the highest quantum efficiency level of 30% ever reported for such CdTe quantum dot solids. Our electromagnetic simulation results are in good agreement with the experimental characterization data showing a significant emission enhancement in the vertical polarization, for which their fluorescence decay lifetimes are substantially shortened by consecutive replication of our unit cell architecture design. Such strongly plasmon-exciton coupling nanocomposites hold great promise for future exploitation and development of quantum dot plasmonic biophotonics and quantum dot plasmonic optoelectronics. | en_US |
dc.description.provenance | Made available in DSpace on 2015-07-28T12:06:00Z (GMT). No. of bitstreams: 1 10.1021-nn1030324.pdf: 3712858 bytes, checksum: cc17af7be4f9a62b54b1a777b1281bde (MD5) | en |
dc.identifier.doi | 10.1021/nn1030324 | en_US |
dc.identifier.issn | 1936-0851 | |
dc.identifier.uri | http://hdl.handle.net/11693/13375 | |
dc.language.iso | English | en_US |
dc.publisher | American Chemical Society | en_US |
dc.relation.isversionof | http://dx.doi.org/10.1021/nn1030324 | en_US |
dc.source.title | ACS Nano | en_US |
dc.subject | Localized surface plasmons | en_US |
dc.subject | Excitons | en_US |
dc.subject | Fluorescence anisotropy | en_US |
dc.subject | Resonators | en_US |
dc.subject | Semiconductor quantum dots | en_US |
dc.subject | Layer-by-layer assembly | en_US |
dc.subject | Nanocomposites | en_US |
dc.title | Anisotropic Emission from Multilayered Plasmon Resonator Nanocomposites of Isotropic Semiconductor Quantum Dots | en_US |
dc.type | Article | en_US |
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