volume 12 issue 21 publication number 2303198

Hybrid Photonic Structures: Gallium Phosphide Nanowires Decorated with Carbon Dots for Enhanced Broadband Emission

Mariia S. Kovova 1
Alexey Kuznetsov 2, 3
Maria A. Anikina 2, 3
Arina A. Efimova 1
Stanislav V Shmakov 3, 4
Demid A Kirilenko 5
Alexey P. Bolshakov 2, 3, 5, 7
Publication typeJournal Article
Publication date2024-04-15
scimago Q1
wos Q1
SJR1.995
CiteScore12.7
Impact factor7.2
ISSN21951071
Abstract

Carbon dots (CDs) are promising nanostructures in the field of photonics owing to the ease of fabrication, tunable and efficient emission. Gallium phosphide (GaP) nanowires are known for high surface area, optical density, waveguiding, resonant optical properties but lacking the luminescence due to the indirect bandgap. Here, hybrid photonic structures – GaP nanowires decorated with the CDs are fabricated and studied. Feasible drop‐casting deposition technique allows fabrication of dense vertical structures exhibiting efficient photoluminescence. Deposition of the CDs over the nanowires does not affect their luminescent properties demonstrating tolerance of the approach toward the surface aggregation. Tuning of the emission spectrum is obtained via variation of the excitation wavelength and CDs’ synthesis protocol. The structures emitting throughout the visible range are obtained. Analysis of the photoluminescence of an individual structure demonstrates the most intense and fast recombination processes at the ends of a nanowire. It is shown that the luminescence of the CDs’ covering a nanowire acting as a Fabry–Perot cavity is enhanced up to a factor of 3 governed by the Purcell effect. The obtained results unveil a path for fabrication of novel photonic devices via decoration of optically dense nanowires with CDs for enhanced and directed broadband emission.

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Zakharov V. et al. Hybrid Photonic Structures: Gallium Phosphide Nanowires Decorated with Carbon Dots for Enhanced Broadband Emission // Advanced Optical Materials. 2024. Vol. 12. No. 21. 2303198
GOST all authors (up to 50) Copy
Zakharov V., Rider M. A., Kovova M. S., Kuznetsov A., Anikina M. A., Efimova A. A., Kondratev V. M., Shmakov S. V., Kirilenko D. A., Parfenov P. S., Fedorov V. V., Orlova A. O., Bolshakov A. P. Hybrid Photonic Structures: Gallium Phosphide Nanowires Decorated with Carbon Dots for Enhanced Broadband Emission // Advanced Optical Materials. 2024. Vol. 12. No. 21. 2303198
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TY - JOUR
DO - 10.1002/adom.202303198
UR - https://onlinelibrary.wiley.com/doi/10.1002/adom.202303198
TI - Hybrid Photonic Structures: Gallium Phosphide Nanowires Decorated with Carbon Dots for Enhanced Broadband Emission
T2 - Advanced Optical Materials
AU - Zakharov, Viktor
AU - Rider, Maxim A.
AU - Kovova, Mariia S.
AU - Kuznetsov, Alexey
AU - Anikina, Maria A.
AU - Efimova, Arina A.
AU - Kondratev, Valeriy M
AU - Shmakov, Stanislav V
AU - Kirilenko, Demid A
AU - Parfenov, Peter S.
AU - Fedorov, Vladimir V
AU - Orlova, Anna O
AU - Bolshakov, Alexey P.
PY - 2024
DA - 2024/04/15
PB - Wiley
IS - 21
VL - 12
SN - 2195-1071
ER -
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@article{2024_Zakharov,
author = {Viktor Zakharov and Maxim A. Rider and Mariia S. Kovova and Alexey Kuznetsov and Maria A. Anikina and Arina A. Efimova and Valeriy M Kondratev and Stanislav V Shmakov and Demid A Kirilenko and Peter S. Parfenov and Vladimir V Fedorov and Anna O Orlova and Alexey P. Bolshakov},
title = {Hybrid Photonic Structures: Gallium Phosphide Nanowires Decorated with Carbon Dots for Enhanced Broadband Emission},
journal = {Advanced Optical Materials},
year = {2024},
volume = {12},
publisher = {Wiley},
month = {apr},
url = {https://onlinelibrary.wiley.com/doi/10.1002/adom.202303198},
number = {21},
pages = {2303198},
doi = {10.1002/adom.202303198}
}