Versatile Spectral and Lifetime Multiplexing Nanoplatform with Excitation Orthogonalized Upconversion Luminescence.
basic_science · Level V
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- Record sourced from PubMed, PMID 28238259.
- Also identified by DOI 10.1021/acsnano.7b00559.
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Abstract
Optical encoding together with color multiplexing benefits on-site detection, and enriching the components with narrow emissions from lanthanide could greatly increase the coding density. Here, we show a typical example to combine emission color and lifetime that are simultaneously integrated in a single lanthanide nanoparticle. With the multicompartment core/shell structure, the nanoparticles can activate different emitting pathways under varied excitation. This enables the nanoparticles to generate versatile excitation orthogonalized upconversion luminescence in both emission colors and lifetimes. As a typical example, green emission of Er<sup>3+</sup> and blue emission of Tm<sup>3+</sup> can be triggered with 808 and 980 nm lasers, respectively. Moreover, with incorporation of Tb<sup>3+</sup>, not only is emission from Tb<sup>3+</sup> introduced but also the lifetime difference of 0.13 ms (Er<sup>3+</sup>) and 3.6 ms (Tb<sup>3+</sup>) is yielded for the green emission, respectively. Multiplexed fingerprint imaging and time-gated luminescence imaging were achieved in wavelength and lifetime dimensions. The spectral and lifetime encoding ability from lanthanide luminescence greatly broadens the scope of luminescent materials for optical multiplexing studies.