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Tuning the spontaneous emission of CdTe quantum dots with hybrid silicon-gold nanogaps (2025)
Journal Article
Al-Hamadani, A., Al-Dulami, A., Bartschmid, T., Menath, J., Muravitskaya, A., Vogel, N., Bourret, G. R., Bouillard, J. S. G., & Adawi, A. M. (2025). Tuning the spontaneous emission of CdTe quantum dots with hybrid silicon-gold nanogaps. RSC advances, 15(35), 29053-29062. https://doi.org/10.1039/d5ra04583e

Hybrid dielectric-metal nanogaps offer unique properties such as enhanced local density of optical states (LDOS) and simultaneously high quantum yield and coupling efficiency, with applications in bright single-photon sources, efficient nanoLEDs and... Read More about Tuning the spontaneous emission of CdTe quantum dots with hybrid silicon-gold nanogaps.

Long-Range and High-Efficiency Plasmon-Assisted Förster Resonance Energy Transfer (2023)
Journal Article
Hamza, A. O., Al-Dulaimi, A., Bouillard, J. S. G., & Adawi, A. M. (2023). Long-Range and High-Efficiency Plasmon-Assisted Förster Resonance Energy Transfer. Journal of physical chemistry. C, 127(44), 21611–21616. https://doi.org/10.1021/acs.jpcc.3c04281

The development of a long-range and efficient Förster resonance energy transfer (FRET) process is essential for its application in key enabling optoelectronic and sensing technologies. Via controlling the delocalization of the donor’s electric field... Read More about Long-Range and High-Efficiency Plasmon-Assisted Förster Resonance Energy Transfer.