Bright Tm<sup>3+</sup>-based downshifting luminescence nanoprobe operating around 1800 nm for NIR-IIb and c bioimaging.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 36841808.
- Also identified by DOI 10.1038/s41467-023-36813-5 and PMC identifier 9968279.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Fluorescence bioimaging based on rare-earth-doped nanocrystals (RENCs) in the shortwave infrared (SWIR, 1000-3000 nm) region has aroused intense interest due to deeper penetration depth and clarity. However, their downshifting emission rarely shows sufficient brightness beyond 1600 nm, especially in NIR-IIc. Here, we present a class of thulium (Tm) self-sensitized RENC fluorescence probes that exhibit bright downshifting luminescence at 1600-2100 nm (NIR-IIb/c) for in vivo bioimaging. An inert shell coating minimizes surface quenching and combines strong cross-relaxation, allowing LiTmF<sub>4</sub>@LiYF<sub>4</sub> NPs to emit these intense downshifting emissions by absorbing NIR photons at 800 nm (large Stokes shift ~1000 nm with a absolute quantum yield of ~14.16%) or 1208 nm (NIR-II<sub>in</sub> and NIR-II<sub>out</sub>). Furthermore, doping with Er<sup>3+</sup> for energy trapping achieves four-wavelength NIR irradiation and bright NIR-IIb/c emission. Our results show that Tm-based NPs, as NIR-IIb/c nanoprobes with high signal-to-background ratio and clarity, open new opportunities for future applications and translation into diverse fields.
Medical subject headings
- Metals, Rare Earth
- Nanoparticles