Plasmon-modulated photoluminescence of individual gold nanostructures
In this work, we performed a systematic study on the photoluminescence and scattering spectra of individual gold nanostructures that were lithographically defined. We identify the role of plasmons in photoluminescence as modulating the energy transfer between excited electrons and emitted photons. B...
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sg-ntu-dr.10356-964482020-03-07T12:34:42Z Plasmon-modulated photoluminescence of individual gold nanostructures Hu, Hailong Duan, Huigao Shen, Zexiang Yang, Joel K. W. School of Physical and Mathematical Sciences In this work, we performed a systematic study on the photoluminescence and scattering spectra of individual gold nanostructures that were lithographically defined. We identify the role of plasmons in photoluminescence as modulating the energy transfer between excited electrons and emitted photons. By comparing photoluminescence spectra with scattering spectra, we observed that the photoluminescence of individual gold nanostructures showed the same dependencies on shape, size, and plasmon coupling as the particle plasmon resonances. Our results provide conclusive evidence that the photoluminescence in gold nanostructures indeed occurs via radiative damping of plasmon resonances driven by excited electrons in the metal itself. Moreover, we provide new insight on the underlying mechanism based on our analysis of a reproducible blue shift of the photoluminescence peak (relative to the scattering peak) and observation of an incomplete depolarization of the photoluminescence. 2013-06-13T02:12:44Z 2019-12-06T19:30:57Z 2013-06-13T02:12:44Z 2019-12-06T19:30:57Z 2012 2012 Journal Article Hu, H., Duan, H., Yang, J. K. W., & Shen, Z. (2012). Plasmon-modulated photoluminescence of individual gold nanostructures. ACS nano, 6(11), 10147-10155. 1936-0851 https://hdl.handle.net/10356/96448 http://hdl.handle.net/10220/10291 10.1021/nn3039066 en ACS nano © 2012 American Chemical Society. |
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In this work, we performed a systematic study on the photoluminescence and scattering spectra of individual gold nanostructures that were lithographically defined. We identify the role of plasmons in photoluminescence as modulating the energy transfer between excited electrons and emitted photons. By comparing photoluminescence spectra with scattering spectra, we observed that the photoluminescence of individual gold nanostructures showed the same dependencies on shape, size, and plasmon coupling as the particle plasmon resonances. Our results provide conclusive evidence that the photoluminescence in gold nanostructures indeed occurs via radiative damping of plasmon resonances driven by excited electrons in the metal itself. Moreover, we provide new insight on the underlying mechanism based on our analysis of a reproducible blue shift of the photoluminescence peak (relative to the scattering peak) and observation of an incomplete depolarization of the photoluminescence. |
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School of Physical and Mathematical Sciences |
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School of Physical and Mathematical Sciences Hu, Hailong Duan, Huigao Shen, Zexiang Yang, Joel K. W. |
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Article |
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Hu, Hailong Duan, Huigao Shen, Zexiang Yang, Joel K. W. |
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Hu, Hailong Duan, Huigao Shen, Zexiang Yang, Joel K. W. Plasmon-modulated photoluminescence of individual gold nanostructures |
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Hu, Hailong |
title |
Plasmon-modulated photoluminescence of individual gold nanostructures |
title_short |
Plasmon-modulated photoluminescence of individual gold nanostructures |
title_full |
Plasmon-modulated photoluminescence of individual gold nanostructures |
title_fullStr |
Plasmon-modulated photoluminescence of individual gold nanostructures |
title_full_unstemmed |
Plasmon-modulated photoluminescence of individual gold nanostructures |
title_sort |
plasmon-modulated photoluminescence of individual gold nanostructures |
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2013 |
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https://hdl.handle.net/10356/96448 http://hdl.handle.net/10220/10291 |
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