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Synthesis of Core-shell Lanthanide-doped Upconversion Nanocrystals for Cellular Applications
Published on: November 10, 2017
Ultrahigh-Brightness Chiral Lanthanide Organic Framework X-ray Scintillators for Circularly Polarized Luminescence
Wen-Kang Jiang1, Qian Qin1, Shan-Shan Qin1
1Key Laboratory for Chemistry and Molecular Engineering of Medicinal Resources (Ministry of Education of China), School of Chemistry and Pharmaceutical Sciences, Guangxi Normal University, Guilin 541004, P. R. China.
Abstract:
In this study, the multifunctional chiral lanthanide organic frameworks (Ln-MOFs, RR/SS-Eu-MOFs) with circularly polarized luminescence (CPL), second-order nonlinear optics (NLO), and high-performance X-ray scintillator applications were constructed using chiral ligands and Eu(NO3)3·6H2O. The RR/SS-Eu-MOFs exhibited a mirror-symmetric CPL signal at 585 nm for the 5D0 → 7F1 level transition of Eu3+, with corresponding asymmetry factors (glum values) of 0.0017 and 0.0066, respectively. The particle size-dependent second harmonic generation (SHG) response was measured using the Kurtz-Perry powder method with a 1064 nm fundamental laser and KDP as a reference. The NLO signal of RR-Eu-MOF increased with increasing particle size, and the maximum SHG response was 0.8 times that of KDP. Moreover, relying on the RR-EuxTb(1-x)MOFs, SS-EuxTb(1-x)MOFs, and RR-Eu-MOF@SS-Tb-MOF hetero structure, they demonstrated the efficient multicolor luminescence behavior of a single crystal, thus constructing a complex multilayered intelligent anticounterfeiting system. Notably, the high-performance RR-Eu-MOF X-ray scintillator boasts a light yield of up to 31,327 photons·MeV-1 and a detection limit as low as 52.8 nGy/s (a 104-fold reduction compared to the typical X-ray medical diagnostic dose (5.5 μGy/s)). This study not only opens new horizons for constructing high-performance chiral Ln-MOF scintillators but also provides a new blueprint for developing multifunctional chiral Ln-MOF emitters.

