研究目的
To develop a one-pot successive epitaxial layer-by-layer formation (SELF) strategy for synthesizing high-quality monodispersed multi-shelled upconversion nanoparticles (UCNPs) with enhanced photoluminescence intensity for anticounterfeiting applications and latent fingerprint recognition.
研究成果
The one-pot successive epitaxial layer-by-layer formation (SELF) strategy successfully synthesizes high-quality multi-shelled UCNPs with significantly enhanced emission intensities. These UCNPs, in conjunction with downconversion nanoparticles, enable dual-modal manipulation of luminescence for high-level anticounterfeiting and provide distinguishable details in latent fingerprint recognition, demonstrating their potential in security applications.
研究不足
The study focuses on the synthesis and application of multi-shelled UCNPs for anticounterfeiting and latent fingerprint recognition, but does not explore the scalability of the SELF strategy for industrial applications or the long-term stability of the UCNPs under various environmental conditions.