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3. Understanding the Role of Non-Fullerene Acceptors Crystallinity on the Charge Transport Properties and Performance of Organic Solar Cells

6. Structural and Dynamic Disorder, Not Ionic Trapping, Controls Charge Transport in Highly Doped Conducting Polymers

7. Analysis of external and internal disorder to understand band-like transport in n-type organic semiconductors

8. Thermal conductivity of benzothieno-benzothiophene derivatives at the nanoscale

9. Structural and dynamic disorder, not ionic trapping, controls charge transport in highly doped conducting polymers

11. Freeing electrons from extrinsic and intrinsic disorder yields band-like transport in n-type organic semiconductors

13. A novel paradigm approach to design structural natural fiber composites from fully sustainable CO2-derived thermosets with outstanding interfacial strength and circular features

18. Side chain engineering in indacenodithiophene-co-benzothiadiazole and its impact on mixed ionic–electronic transport properties.

19. On the Importance of Chemical Precision in Organic Electronics: Fullerene Intercalation in Perfectly Alternating Conjugated Polymers

20. Polaron spin dynamics in high-mobility polymeric semiconductors

23. Non-equilibrium transport in polymer mixed ionic–electronic conductors at ultrahigh charge densities

28. Understanding the role of non-fullerene acceptor crystallinity in the charge transport properties and performance of organic solar cells

36. The impact of side chain elongation from the Y6 to Y6-12 acceptor in organic solar cells: a fundamental study from molecules to devices.

40. Dinaphthotetrathienoacenes: Synthesis, Characterization, and Applications in Organic Field‐Effect Transistors

44. Approaching disorder-free transport in high-mobility conjugated polymers

47. High‐Efficiency Ion‐Exchange Doping of Conducting Polymers

48. Strong Suppression of Thermal Conductivity in the Presence of Long Terminal Alkyl Chains in Low‐Disorder Molecular Semiconductors

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