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Your search keyword '"temperature sensing"' showing total 412 results

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412 results on '"temperature sensing"'

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1. Optical Temperature-Sensing Performance of Nd 3+ :MF 2 (M=Ba, Ca, Sr) Crystalline Powders Prepared by Combustion Synthesis.

2. Environmental and Excitation Power Effects on the Ratiometric Upconversion Luminescence Based Temperature Sensing Using Nanocrystalline NaYF 4 :Yb 3+ ,Er 3 .

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3. Temperature-controlled down-conversion luminescence behavior of Eu 3 + -doped transparent MF 2 (M = Ba, Ca, Sr) glass ceramics.

4. Structural and optical properties of Er3+/Yb3+ doped barium titanate phosphor prepared by co-precipitation method.

5. Luminescence performance, temperature sensing characteristics and Judd-Ofelt theory analysis of Y2MoO6:Er3+/Yb3+/Li+ upconversion phosphors.

6. Towards core–shell engineering for efficient luminescence and temperature sensing.

7. Luminescence properties and temperature characteristics of Yb3+/Nd3+/Ho3+ triple doped BaGeTeO6 up-conversion phosphors under 980 nm excitation.

8. Harnessing the Dual‐Mode Luminescence of Er/Yb Co‐Doped SrLaLiTeO6 Double Perovskite Phosphors for Remarkably Wide Range Temperature Sensing and NIR pc‐LEDs.

9. Phonon-assisted upconversion luminescence thermal enhancement of NaYS2:Yb3+,Nd3+ for optical temperature sensing.

10. High purity green upconversion luminescence and temperature sensing in Bi2Mo2O9: Yb3+/Er3+ phosphors.

12. Upconversion luminescence and temperature sensing performance of Zn2+-doped Ba2GdAlO5: Yb3+, Er3+ phosphors.

13. Stimuli‐Responsive Lanthanide Activated Piezoelectric LiNbO3 Microcrystals for Multimode Luminescence and Optical Sensing Applications.

14. Extremely intense pure green upconversion luminescence in Ho3+/Yb3+ co-doped BiTa7O19 phosphors under 980 nm laser excitation.

15. Site Preference Induced Dual‐Wavelength Mn2+ Upconversion in K2NaScF6:Yb3+, Mn2+ and Its Application in Temperature Sensing.

16. Upconversion Luminescence and Temperature Sensing Properties of High Thermal Stabilized CaGdAlO4:Er3+/Yb3+ Phosphors.

17. Pr3+-Er3+ co-doped Ba3.75Gd0.833Nb10O30 glass-ceramics for tunable luminescence, optical anti-counterfeiting and temperature sensing.

18. Eu3+-doped manganese tungstate for multiparametric and colorimetric luminescence thermometry

19. Anti-Counterfeiting Application and Temperature Sensing Characteristics of SrBi4Ti4O15:Yb3+/Er3+ Phosphor Designed by Solid State Method For Dual-Mode Upconversion Luminescence.

20. NIR‐II Luminescence in Cr4+ Activated CaYGaO4 toward Non‐Invasive Temperature Sensing and Composition Detection.

21. High-sensitive temperature sensing use NIR upconversion luminescence of Er3+-core@Tm3+-shell with good robustness.

22. Thermal enhancement of upconversion luminescence in Sc2Mo3O12: Nd/Yb/Er crystals for optical temperature sensing.

23. Effect of B-site substitution on the luminescence, thermal stability and temperature sensitivity of Ba2NaNb5O15:Eu3+/Er3+ glass ceramics.

24. Structure, Luminescence and Temperature Detection Capability of [C(NH 2) 3 ]M(HCOO) 3 (M = Mg 2+ , Mn 2+ , Zn 2+) Hybrid Organic–Inorganic Formate Perovskites Containing Cr 3+ Ions.

25. Triple-Mode upconversion emission for dynamic multicolor luminescent anti-Counterfeiting.

26. Thermally activated upconversion luminescence and ratiometric temperature sensing under 1064 nm/808 nm excitation.

27. Pure Green Upconversion from a Multicolor Downshifting Perovskite Crystal.

28. Luminescence properties and thermometric performance of Bi3+/Sm3+-codoped BaLa2ZnO5 phosphors.

29. Luminescence Enhancement and Temperature Sensing Properties of Hybrid Bismuth Halides Achieved via Tuning Organic Cations.

30. Real‐Time In Situ Volatile Organic Compound Sensing by a Dual‐Emissive Polynuclear Ln‐MOF with Pronounced LnIII Luminescence Response.

31. Dual‐mode optical thermometry and multicolor anti‐counterfeiting based on Bi3+/Er3+ co‐activated BaGd2O4 phosphor.

32. Strong red upconversion luminescence of Yb3+/Er3+ co-doped Sc6WO12 phosphor for optical thermometry.

33. Ratiometric optical temperature sensing properties based on up-conversion luminescence of novel NaLaTi2O6:Yb3+,Er3+/Ho3+ phosphors.

34. Concentration- and temperature-dependent luminescence mechanisms and fluorescence dynamic temperature sensing of NaY(MoO4)2:Tb3+ phosphors.

35. Optical, thermal, and structural properties of Er3+ incorporated double perovskite Ca2MgWO6 phosphors.

36. Preparation and significant enhancement of upconversion luminescence of α-Ba2ScAlO5:Yb3+/Er3+ phosphors by Ca2+ ions doping.

37. Fiber temperature sensor based on dual-wavelength emitting Mg0.388Al2.408O4: Mn2+/Mn4+ phosphors for real-time temperature monitoring.

38. Luminescence and thermometry sensing of Sr2InTaO6: Eu3+, Mn4+ phosphors in a wide temperature range.

39. Dual-mode luminescence temperature sensing performance of manganese (II) doped CsPbCl3 perovskite quantum dots.

40. Tuning of Thermometric Performances of Mixed Eu–Tb Metal–Organic Frameworks through Single‐Crystal Coordinating Solvent Exchange Reactions.

41. Upconversion luminescence color modulation and temperature sensing of Na0.5Bi2.5Nb2−xTaxO9:Er3+/Yb3+ phosphors.

42. Optical thermometry based on the luminescence intensity ratio of Dy3+-doped GdPO4 phosphors.

43. Potential of afterglow zirconia as a sensitive biological temperature probe.

44. Multispectral luminescence of core-shell rare-earth NaLuF4:Yb,Er@NaLuF4:Yb,Tm@NaLuF4 upconversion nanomaterials for ratiometric optical temperature sensing.

45. Codoping Pr3+ and Er3+ into NaLaTi2O6 to realize dual-mode FIR temperature sensing properties.

46. Enhancement of upconversion luminescence and temperature sensing performance in Er3+/Yb3+ doped Lu2O3 and Lu2O2S phosphors by incorporation of lithium ions.

47. Luminescence and temperature sensing properties of Eu3+-Tb3+ doped NaGd(MoO4)2 glass ceramics.

48. Co-precipitation synthesis and thermally enhanced upconversion luminescence properties of ScPO4:Yb3+/Er3+ phosphors for temperature sensing.

49. Effects of optically inert ions on up-conversion luminescence and temperature-sensing properties of Y2O2S: Er3+/Yb3+/Tm3+ phosphors.

50. Delineating Dy3+ and Sm3+ in thermally stable strontium silicate apatites for multifunctional applications.