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1. How much physics is in a current-voltage curve? Inferring defect properties from photovoltaic device measurements

2. Charge-carrier lifetime measurements in early-stage photovoltaic materials: intuition, uncertainties, and opportunities

3. Homogenization of Halide Distribution and Carrier Dynamics in Alloyed Organic-Inorganic Perovskites

4. Homogenized halides and alkali cation segregation in alloyed organic-inorganic perovskites.

5. Improving the Carrier Lifetime of Tin Sulfide via Prediction and Mitigation of Harmful Point Defects

7. How Much Physics is in a Current–Voltage Curve? Inferring Defect Properties From Photovoltaic Device Measurements

8. How Much Physics is in a Current–Voltage Curve? Inferring Defect Properties From Photovoltaic Device Measurements

10. Framework to predict optimal buffer layer pairing for thin film solar cell absorbers: A case study for tin sulfide/zinc oxysulfide.

11. Solubility and Diffusivity

12. Halide Homogenization and Cation Segregation in High Performance Perovskite Solar Cells

14. A-Site Cation in Inorganic A3Sb2I9 Perovskite Influences Structural Dimensionality, Exciton Binding Energy, and Solar Cell Performance

15. Solubility and Diffusivity: Important Metrics in the Search for the Root Cause of Light- and Elevated Temperature-Induced Degradation

17. High Tolerance to Iron Contamination in Lead Halide Perovskite Solar Cells

19. Searching for “Defect-Tolerant” Photovoltaic Materials: Combined Theoretical and Experimental Screening

23. Methylammonium Bismuth Iodide as a Lead‐Free, Stable Hybrid Organic–Inorganic Solar Absorber

26. Investigation of Bismuth Triiodide (BiI3) for Photovoltaic Applications

28. 3.88% Efficient Tin Sulfide Solar Cells using Congruent Thermal Evaporation

29. A path to 10% efficiency for tin sulfide devices

30. Methylammonium Bismuth Iodide as a Lead-Free, Stable Hybrid Organic-Inorganic Solar Absorber.

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