Plasmonic Field-Guided Patterning of Hybrid Nanostructured Gratings for Their Plasmon-Mediated Optical Activities
Research output: Journal Publications and Reviews › RGC 21 - Publication in refereed journal › peer-review
Author(s)
Detail(s)
Original language | English |
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Pages (from-to) | 22907-22915 |
Journal / Publication | ACS Applied Nano Materials |
Volume | 6 |
Issue number | 24 |
Online published | 8 Dec 2023 |
Publication status | Published - 22 Dec 2023 |
Externally published | Yes |
Link(s)
Abstract
Combining the nano- and macroworlds in nanophotonics is always a great challenge for manufacturing uniform plasmonic nanogratings to achieve overall extraordinary optical properties. This work reports a method to apply large-area nanostructured gratings to tune the fluorescence behavior of quantum dots (QDs). The angle-resolved spectral measurements on the Ag NPs-based nanogratings show that the transverse electric (TE) polarized incident light has suffered very little scattering, demonstrating photon energy is coupled with plasmonic energy on the Ag NP-based lines. This plasmon-induced energy transferring effect was further used to tune the plasmon-induced QD fluorescence on the nanogratings. The QDs on Ag NP-based nanogratings, exhibiting up to 5 times higher photoluminescence (PL) intensity than that on a random Ag NP-based film, are carefully characterized using PL spectroscopy. In contrast, the bare QDs directly coupled onto the nanogratings. Spectral measurements in combination with numerical simulations demonstrate that anisotropic plasmon-induced energy transfer in the nanocomposite system plays a critical role in overall fluorescent tuning. Such nanogratings exhibit multifunctionality, offering an efficient way to fabricate plasmonic nanograting-QD composites with great potential applications in plasmonic sensors, QD displays, and fluorescent spectroscopy. © 2023 American Chemical Society.
Research Area(s)
- Ag NP-based nanogratings, fluorescence tuning, photoresponse enhancement, quantum dots
Citation Format(s)
Plasmonic Field-Guided Patterning of Hybrid Nanostructured Gratings for Their Plasmon-Mediated Optical Activities. / Huang, Xiaoping; Zhao, Yizhe; Wang, Ying et al.
In: ACS Applied Nano Materials, Vol. 6, No. 24, 22.12.2023, p. 22907-22915.
In: ACS Applied Nano Materials, Vol. 6, No. 24, 22.12.2023, p. 22907-22915.
Research output: Journal Publications and Reviews › RGC 21 - Publication in refereed journal › peer-review