Excitation-Independent Emission of Carbon Quantum Dot Solids

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Abstract

Solid assemblies of carbon quantum dots (CQDs) are important for diverse applications including LEDs, solar cells, and photosensors; their optical and electrical properties have not been explored yet. Herein, we used amphiphilic CQDs synthesized from citric acid and thiourea by a solvothermal method to fabricate CQD solid films. Optical properties of CQDs studied by UV-Vis and photoluminescence spectroscopies indicate that CQDs possess three different emission centers at 425 nm, 525 nm, and 625 nm originating from C sp2 states, N-states, and S-states, respectively. In a solid state, π-π stacking quenched the blue emission, while the red emission increased. Importantly, CQD films exhibited excitation independence, which is important to design solid-state lighting applications.

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Mai, X. D., Phan, Y. T. H., & Nguyen, V. Q. (2020). Excitation-Independent Emission of Carbon Quantum Dot Solids. Advances in Materials Science and Engineering, 2020. https://doi.org/10.1155/2020/9643168

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