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1. Highly Conductive Charge Transport Layers Impair Charge Extraction Selectivity in Thin‐Film Solar Cells

2. Open-circuit voltage of organic solar cells: interfacial roughness makes the difference

3. A Review on the Fundamental Properties of Sb2Se3-Based Thin Film Solar Cells

4. Enhancing sub-bandgap external quantum efficiency by photomultiplication for narrowband organic near-infrared photodetectors

5. The role of spin in the degradation of organic photovoltaics

6. Reverse dark current in organic photodetectors and the major role of traps as source of noise

7. Orientation dependent molecular electrostatics drives efficient charge generation in homojunction organic solar cells

8. Strong light-matter coupling for reduced photon energy losses in organic photovoltaics

9. Doping-induced carrier profiles in organic semiconductors determined from capacitive extraction-current transients

10. Organic narrowband near-infrared photodetectors based on intermolecular charge-transfer absorption

11. Structural order promotes efficient separation of delocalized charges at molecular heterojunctions

12. Reply to Comment on 'Enhanced Charge Selectivity via Anodic-C60 Layer Reduces Nonradiative Losses in Organic Solar Cells'

13. Narrowband organic photodetectors – towards miniaturized, spectroscopic sensing

14. Highly conductive charge transport layers impair charge extraction selectivity in thin-film solar cells

15. Sb2Se3 Polycrystalline Thin Films Grown on Different Window Layers

16. Manipulating the Charge Transfer Absorption for Narrowband Light Detection in the Near-Infrared

17. Temperature dependent charge transfer state absorption and emission reveal dominant role of dynamic disorder in organic solar cells

18. Reducing non-radiative voltage losses by methylation of push-pull molecular donors in organic solar cells

19. Stacked Dual-Wavelength Near-Infrared Organic Photodetectors

20. Organic solar cells—the path to commercial success

21. Orientation dependent molecular electrostatics drives efficient charge generation in homojunction organic solar cells

22. Intrinsic Detectivity Limits of Organic Near‐Infrared Photodetectors

23. Miniaturized VIS‐NIR Spectrometers Based on Narrowband and Tunable Transmission Cavity Organic Photodetectors with Ultrahigh Specific Detectivity above 10 14 Jones

24. Absorption Tails of Donor:C60 Blends Provide Insight into Thermally Activated Charge-Transfer Processes and Polaron Relaxation

25. Strong light-matter coupling for reduced photon energy losses in organic photovoltaics

26. Degradation pathways in standard and inverted DBP-C-70 based organic solar cells

27. Emissive and charge-generating donor-acceptor interfaces for organic optoelectronics with low voltage losses

28. Field Effect versus Driving Force: Charge Generation in Small‐Molecule Organic Solar Cells

29. Hole transport in low-donor-content organic solar cells

30. Organic narrowband near-infrared photodetectors based on intermolecular charge-transfer absorption

31. Intrinsic non-radiative voltage losses in fullerene-based organic solar cells

32. Charge Transport in Pure and Mixed Phases in Organic Solar Cells

33. Influence of Interface Morphology onto the Photovoltaic Properties of Nanopatterned ZnO/Poly(3-hexylthiophene) Hybrid Solar Cells. An Impedance Spectroscopy Study

34. The role of spin in the degradation of organic photovoltaics

35. Impact of Triplet Excited States on the Open-Circuit Voltage of Organic Solar Cells

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