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Non-traditional fluorescence in quadruple hydrogen bonded supramolecular polymers. [PDF]
Zuo H +10 more
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Molecular mechanism of biocompatible clusteroluminogens from citric acid and l-lysine. [PDF]
Zhang Q, Sun P, Li B.
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Pore-Engineered Luminescent MOF Sensors for PFAS Recognition in Water. [PDF]
Han Z +8 more
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Color tuning in lanthanide ions doped upconversion nanocrystals. [PDF]
Zhang J +5 more
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CaS:Mn<sub>1-x</sub>Pb<sub>x</sub> Luminescent Material Production from Phosphogypsum. [PDF]
Khliyan ZD +9 more
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Smart Semiconductors: An Overview of AZnOS (A= Ca, Sr, Ba) Based Phosphors, Multi-Stimuli Responsive Luminescence, and Potential Application Prospects. [PDF]
Wang Y +12 more
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Color‐Tunable Supramolecular Luminescent Materials
Advanced Materials, 2021AbstractConstructing multicolor photoluminescent materials with tunable properties is an attractive research objective on account of their abundant applications in materials science and biomedical engineering. By comparison with covalent synthesis, supramolecular chemistry has provided a more competitive and promising strategy for the production of ...
Yu Wang +3 more
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Photoresponsive lanthanide luminescent materials
Journal of Materials Chemistry CThis review introduces the response mechanism of photoresponsive lanthanide luminescent materials. In particular, various applications in luminescent actuators, photoswitches, intelligent anticounterfeiting, and theranostics are highlighted.
Lingna Su +3 more
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Advanced Optical Materials, 2023
Highly efficient luminescence material covering near‐infrared (NIR) I (700–1000 nm) and II (1000–1700 nm) is of great importance for phosphor‐converted NIR light‐emitting diodes (pc‐LEDs) light sources.
Qianqian Zhang +6 more
semanticscholar +1 more source
Highly efficient luminescence material covering near‐infrared (NIR) I (700–1000 nm) and II (1000–1700 nm) is of great importance for phosphor‐converted NIR light‐emitting diodes (pc‐LEDs) light sources.
Qianqian Zhang +6 more
semanticscholar +1 more source

