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Excitation-independent deep-blue emitting carbon dots with 62% emission quantum efficiency and monoexponential decay profile for high-resolution fingerprint identification
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S. Savaedi Et Al. , "Excitation-independent deep-blue emitting carbon dots with 62% emission quantum efficiency and monoexponential decay profile for high-resolution fingerprint identification," NANOTECHNOLOGY , vol.33, no.44, 2022

Savaedi, S. Et Al. 2022. Excitation-independent deep-blue emitting carbon dots with 62% emission quantum efficiency and monoexponential decay profile for high-resolution fingerprint identification. NANOTECHNOLOGY , vol.33, no.44 .

Savaedi, S., Soheyli, E., Zheng, G., Lou, Q., Sahraei, R., & Shan, C., (2022). Excitation-independent deep-blue emitting carbon dots with 62% emission quantum efficiency and monoexponential decay profile for high-resolution fingerprint identification. NANOTECHNOLOGY , vol.33, no.44.

Savaedi, Soheyla Et Al. "Excitation-independent deep-blue emitting carbon dots with 62% emission quantum efficiency and monoexponential decay profile for high-resolution fingerprint identification," NANOTECHNOLOGY , vol.33, no.44, 2022

Savaedi, Soheyla Et Al. "Excitation-independent deep-blue emitting carbon dots with 62% emission quantum efficiency and monoexponential decay profile for high-resolution fingerprint identification." NANOTECHNOLOGY , vol.33, no.44, 2022

Savaedi, S. Et Al. (2022) . "Excitation-independent deep-blue emitting carbon dots with 62% emission quantum efficiency and monoexponential decay profile for high-resolution fingerprint identification." NANOTECHNOLOGY , vol.33, no.44.

@article{article, author={Soheyla Savaedi Et Al. }, title={Excitation-independent deep-blue emitting carbon dots with 62% emission quantum efficiency and monoexponential decay profile for high-resolution fingerprint identification}, journal={NANOTECHNOLOGY}, year=2022}