Latest Research in Luminescence and Fluorescent Materials

30 research papers · 2026 median publication year

Top Research Topics in Luminescence and Fluorescent Materials

Highest-Cited Papers

  1. Data-Driven and Quantum-Chemical Insights into Emergence of Multiresonance Effect in Thermally Activated Delayed Fluorescence Emitters
  2. Beyond the Static Approximation: Assessing the Impact of Conformational and Kinetic Broadening on the Description of TADF Emitters
  3. Geometric Accommodation of Atom Repulsions Enables Sub‐10 nm Ultra‐Narrowband Multi‐Resonance Blue Emitters
  4. Geometric Accommodation of Atom Repulsions Enables Sub‐10 nm Ultra‐Narrowband Multi‐Resonance Blue Emitters
  5. One‐Step Intermolecular Oxidative Coupling and Cyclodehydration Strategy for Pure‐Green B,N,O‐Embedded Hetero[9]Helicene Emitter
  6. Triptycene‐Fused Carbonyl‐Nitrogen Multiresonance Emitter for Efficient Green OLEDs With High Color Purity
  7. Ortho ‐Diboron Blue Multiple Resonance Thermally Activated Delayed Fluorescence Material
  8. Deep‐Blue OLEDs With Color Purity Approaching BT.2020 Standard and Blue Index of 464 Enabled by Narrowband Pt(II) Emitters With 3D Geometry
  9. Precise Molecular Design of TADF Sensitizer With Balanced Exciton Dynamics for High‐Performance Narrowband Hyperfluorescence OLEDs
  10. Precise Molecular Design of TADF Sensitizer With Balanced Exciton Dynamics for High‐Performance Narrowband Hyperfluorescence OLEDs
  11. Five‐Boron Multiple‐Resonance TADF Emitter With Accelerated Reverse Intersystem Crossing for High‐Performance Narrowband Green OLEDs
  12. Five‐Boron Multiple‐Resonance TADF Emitter With Accelerated Reverse Intersystem Crossing for High‐Performance Narrowband Green OLEDs
  13. Decoupling Triplet Population from Intersystem Crossing in TADF Materials
  14. Sterically Regulated Tetradentate Pt(II) Complex for Deep-Blue OLEDs with High Color Purity and Low Efficiency Roll-Off at High Brightness
  15. Substitution-dependent excited-state relaxation pathways in the TADF structural isomers MA-TA and mMA-TA
  16. Carbonyl‐Locking Strategy for Multi‐Resonance Emitters Enables Efficient Pure‐Green OLEDs With Ultralow Efficiency Roll‐Off
  17. Carbonyl‐Locking Strategy for Multi‐Resonance Emitters Enables Efficient Pure‐Green OLEDs With Ultralow Efficiency Roll‐Off
  18. Efficient and Narrowband Pure‐Green Emission From MR‐TADF Emitter Designed With Para‐N‐π‐N Extended Conjugation and Twisted Xylene
  19. Reduced Concentration Quenching of Multi‐Resonant Thermally Activated Delayed Fluorescence Emitter Incorporating Pillar[5]Arene Macrocycle
  20. Symmetry Reconstruction Breaks the Trade‐Off Between Spectral Redshift and Broadening in Long‐Wavelength Multiple Resonance Emitters
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L3 Region - - 2026 Sep Q3

Luminescence and Fluorescent Materials

30 papers

Top Topics (4)

Organic Light-Emitting Diodes Research25
Luminescence and Fluorescent Materials3
Synthesis and Properties of Aromatic Compounds1
Nonlinear Optical Materials Studies1

Top Publications (20)

1.Data-Driven and Quantum-Chemical Insights into Emergence of Multiresonance Effect in Thermally Activated Delayed Fluorescence Emitters2.Beyond the Static Approximation: Assessing the Impact of Conformational and Kinetic Broadening on the Description of TADF Emitters3.Geometric Accommodation of Atom Repulsions Enables Sub‐10 nm Ultra‐Narrowband Multi‐Resonance Blue Emitters4.Geometric Accommodation of Atom Repulsions Enables Sub‐10 nm Ultra‐Narrowband Multi‐Resonance Blue Emitters5.One‐Step Intermolecular Oxidative Coupling and Cyclodehydration Strategy for Pure‐Green B,N,O‐Embedded Hetero[9]Helicene Emitter6.Triptycene‐Fused Carbonyl‐Nitrogen Multiresonance Emitter for Efficient Green OLEDs With High Color Purity7.Ortho ‐Diboron Blue Multiple Resonance Thermally Activated Delayed Fluorescence Material8.Deep‐Blue OLEDs With Color Purity Approaching BT.2020 Standard and Blue Index of 464 Enabled by Narrowband Pt(II) Emitters With 3D Geometry9.Precise Molecular Design of TADF Sensitizer With Balanced Exciton Dynamics for High‐Performance Narrowband Hyperfluorescence OLEDs10.Precise Molecular Design of TADF Sensitizer With Balanced Exciton Dynamics for High‐Performance Narrowband Hyperfluorescence OLEDs11.Five‐Boron Multiple‐Resonance TADF Emitter With Accelerated Reverse Intersystem Crossing for High‐Performance Narrowband Green OLEDs12.Five‐Boron Multiple‐Resonance TADF Emitter With Accelerated Reverse Intersystem Crossing for High‐Performance Narrowband Green OLEDs13.Decoupling Triplet Population from Intersystem Crossing in TADF Materials14.Sterically Regulated Tetradentate Pt(II) Complex for Deep-Blue OLEDs with High Color Purity and Low Efficiency Roll-Off at High Brightness15.Substitution-dependent excited-state relaxation pathways in the TADF structural isomers MA-TA and mMA-TA16.Carbonyl‐Locking Strategy for Multi‐Resonance Emitters Enables Efficient Pure‐Green OLEDs With Ultralow Efficiency Roll‐Off17.Carbonyl‐Locking Strategy for Multi‐Resonance Emitters Enables Efficient Pure‐Green OLEDs With Ultralow Efficiency Roll‐Off18.Efficient and Narrowband Pure‐Green Emission From MR‐TADF Emitter Designed With Para‐N‐π‐N Extended Conjugation and Twisted Xylene19.Reduced Concentration Quenching of Multi‐Resonant Thermally Activated Delayed Fluorescence Emitter Incorporating Pillar[5]Arene Macrocycle20.Symmetry Reconstruction Breaks the Trade‐Off Between Spectral Redshift and Broadening in Long‐Wavelength Multiple Resonance Emitters
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