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24 results on '"Winchester, Andrew J."'

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1. Moir\'e-localized interlayer exciton wavefunctions captured by imaging its electron and hole constituents

2. Unraveling the varied nature and roles of defects in hybrid halide perovskites with time-resolved photoemission electron microscopy

3. Local Nanoscale Defective Phase Impurities Are the Sites of Degradation in Halide Perovskite Devices

4. Nanoscale Chemical Heterogeneity Dominates the Optoelectronic Response over Local Electronic Disorder and Strain in Alloyed Perovskite Solar Cells

7. Local nanoscale phase impurities are degradation sites in halide perovskites

8. Structure of the moiré exciton captured by imaging its electron and hole

9. Watching (De)Intercalation of 2D Metals in Epitaxial Graphene: Insight into the Role of Defects (Small 11/2024)

10. Performance-limiting nanoscale trap clusters at grain junctions in halide perovskites

12. Multimodal Correlative Microscopy to Study the Chemical and Energetic Landscape of Alloyed Halide Perovskites

13. The varied nature and roles of nanoscale defects in solution processed triple cation mixed halide perovskite thin films

14. Exploring Defects in Triple Cation Mixed Halide Perovskite Thin Films Using Time-Resolved Photoemission Electron Microscopy

15. Nanoscale chemical heterogeneity dominates the optoelectronic response of alloyed perovskite solar cells

16. Unraveling the varied nature and roles of defects in hybrid halide perovskites with time-resolved photoemission electron microscopy

17. Nanoscale chemical heterogeneity dominates the optoelectronic response of alloyed perovskite solar cells

18. Visualizing the Creation and Healing of Traps in Perovskite Photovoltaic Films by Light Soaking and Passivation Treatments

21. Investigation of Trap States and Their Dynamics in Hybrid Organic-inorganic Mixed Cation Perovskite Films Using Time Resolved Photoemission Electron Microscopy

24. Pinhole-free hole transport layers significantly improve the stability of MAPbI3-based perovskite solar cells under operating conditions.

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