Latest Research in Radiation Detection and Scintillator Technologies

13 research papers · 2026 median publication year

Top Research Topics in Radiation Detection and Scintillator Technologies

Highest-Cited Papers

  1. Scalable Fabrication of Low‐Cost, High‐Stability Copper(I) Halide Hybrid Scintillator for High‐Performance Flexible X‐Ray Imaging
  2. Environment‐Regulated Crystal‐Structure Reconfiguration of Hybrid Halide Scintillators Enables Tunable STE Emission Toward Intelligent X‐Ray Imaging
  3. Halogen Tailoring Enables Large-Area Mn-Based Halide Single-Crystal Films with Enhanced Radioluminescence and High-Resolution X-ray Imaging
  4. Epitaxially Grown Li + ‐Conductive Li 0.33 La 0.5567 TiO 3 :Yb 3+ ,Er 3+ Thin Film Enabling Ion‐Migration‐Driven Modulation of Upconversion Luminescence for Potential Electro‐Optical Memory Emitter
  5. Dual Self-Trapped Exciton and Rare-Earth Emissions from Sb3 + /Pr3 + -Activated Metal Halide toward Plant Cultivation Lighting, Dynamic Multilevel Anti-Counterfeiting, and High-CRI WLEDs
  6. Formation Energy Prediction and Feature Analysis of Lead-Free Double Perovskites Based on Deep Learning
  7. Facile, Scalable, and High‐Yield Synthesis of a Near‐Unity Quantum Yield Zero‐Dimensional Copper Halide Cs 3 Cu 2 Cl 5 Scintillator for X‐Ray Imaging
  8. Synergistic effects of amino acid additives in KDP and ADP single crystals: a review of enhanced NLO performance
  9. Phosphonium‐Directed Synthesis of Tb/Eu Coordination Complexes for High‐Resolution X‐Ray Imaging
  10. Ion‐Pair Confinement Enables Through‐Space Charge Transfer for Negative Thermal Quenching Blue‐Emitting Scintillators in High‐Resolution X‐Ray Imaging
  11. Melt‐Processable Manganese (II)‐Based Hybrid Luminescent Glass Enables Lifetime‐Based Thermal Imaging
  12. Hybrid Copper(I) Iodide Scintillators: From Molecular Architecture to X‐Ray Imaging Applications
  13. Polymorphism and NIR Photoluminescence of Anhydrous Ytterbium(III) Acetate: Reversible Transformations of Three Polar Structures in the Temperature Range 100–593 K
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L3 Region - - 2026 Sep Q3

Radiation Detection and Scintillator Technologies

13 papers

Top Topics (6)

Luminescence Properties of Advanced Materials5
Perovskite Materials and Applications3
Radiation Detection and Scintillator Technologies2
Machine Learning in Materials Science1
Nonlinear Optical Materials Research1
Lanthanide and Transition Metal Complexes1

Top Publications (13)

1.Scalable Fabrication of Low‐Cost, High‐Stability Copper(I) Halide Hybrid Scintillator for High‐Performance Flexible X‐Ray Imaging2.Environment‐Regulated Crystal‐Structure Reconfiguration of Hybrid Halide Scintillators Enables Tunable STE Emission Toward Intelligent X‐Ray Imaging3.Halogen Tailoring Enables Large-Area Mn-Based Halide Single-Crystal Films with Enhanced Radioluminescence and High-Resolution X-ray Imaging4.Epitaxially Grown Li + ‐Conductive Li 0.33 La 0.5567 TiO 3 :Yb 3+ ,Er 3+ Thin Film Enabling Ion‐Migration‐Driven Modulation of Upconversion Luminescence for Potential Electro‐Optical Memory Emitter5.Dual Self-Trapped Exciton and Rare-Earth Emissions from Sb3 + /Pr3 + -Activated Metal Halide toward Plant Cultivation Lighting, Dynamic Multilevel Anti-Counterfeiting, and High-CRI WLEDs6.Formation Energy Prediction and Feature Analysis of Lead-Free Double Perovskites Based on Deep Learning7.Facile, Scalable, and High‐Yield Synthesis of a Near‐Unity Quantum Yield Zero‐Dimensional Copper Halide Cs 3 Cu 2 Cl 5 Scintillator for X‐Ray Imaging8.Synergistic effects of amino acid additives in KDP and ADP single crystals: a review of enhanced NLO performance9.Phosphonium‐Directed Synthesis of Tb/Eu Coordination Complexes for High‐Resolution X‐Ray Imaging10.Ion‐Pair Confinement Enables Through‐Space Charge Transfer for Negative Thermal Quenching Blue‐Emitting Scintillators in High‐Resolution X‐Ray Imaging11.Melt‐Processable Manganese (II)‐Based Hybrid Luminescent Glass Enables Lifetime‐Based Thermal Imaging12.Hybrid Copper(I) Iodide Scintillators: From Molecular Architecture to X‐Ray Imaging Applications13.Polymorphism and NIR Photoluminescence of Anhydrous Ytterbium(III) Acetate: Reversible Transformations of Three Polar Structures in the Temperature Range 100–593 K
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