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Keyword [optical anti-counterfeiting]
Result: 1 - 18 | Page: 1 of 1
1. Long-lived Upconversion Luminescence Of Mn2+-doped Fluoride ABF3(A=K,Rb;B=Ca,Zn,Cd)
2. Study On Preparation And Optical Properties Control Of Cellulose Nanocrystals Flexible Iridescent Film
3. Synthesis Of Silicon-Based Room-Temperature Phosphorescent Nanomaterials And Their Applications In Optical Anti-Counterfeiting And Bioimaging
4. Research On Properties And Fabrication Of Micro-nano Structure To Regulate Thermal Radiation
5. Additive Printing Of Cellulose Nanocrystals To Construct Functional Materials
6. Design,Synthesis And Application Of Stimuli-responsive Materials Based On Pt(Ⅱ) Complexes Phosphorescent Soft Salts
7. The Structure And Function Regulation Of Cellulose Nanocrystal-Based Nano-assembly Materials And Their Application Exploration
8. Study On Ionic Liquid Assisted Synthesis And Multifunctional Application Of Calcium-Based Fluorinated Phosphor
9. Structure Regulation And Polarization Properties Of Perovskite Quantum Dot-doped Glass Fabricated By Femtosecond Laser
10. The Construction Of Functional Silicon-Based Hydrogels And Their Use For Dynamic Optical Anti-counterfeiting
11. Preparation And Properties Of Cellulose-based Anti-counterfeiting Materials
12. The Construction And Application Of Temperature Probe Based On Er/Tm Partition Doped Nanostructure
13. Rare-earth Nanoluminescent Materials Controlled By Different Excitation Sources And Its Optical Anti-counterfeiting And X-ray Imaging Applications
14. Design And Preparation Of Stimuli-Responsive Polymeric Luminescent Materials And Their Application In Optical Anti-Counterfeiting
15. Design And Synthesis Of Photo-Switchable Molecular Materials Based On Hydrazones And Their Applications In Optical Anti-Counterfeiting
16. Controllable Synthesis And Application Of Halide Perovskite Nanoassembly By Complex Regulation
17. Synthesis And Luminescence Properties Of Aluminate Phosphors Co-Doped With Rare Earth Ions And Manganese(Chromium)Ions
18. Multiple Optical Responses And Anti-counterfeiting Application Based On Uniaxial Orientation Structure Of Cellulose Nanocrystals
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