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1. Dielectric Surface-Controlled Low-Voltage Organic Transistors via n-Alkyl Phosphonic Acid Self-Assembled Monolayers on High-k Metal Oxide

2. Effects of self-assembled monolayer structural order, surface homogeneity and surface energy on pentacene morphology and thin film transistor device performance

3. Bottom-contact small-molecule n-type organic field effect transistors achieved via simultaneous modification of electrode and dielectric surfaces

4. Spin cast self-assembled monolayer field effect transistors

5. Surface Doping of Conjugated Polymers by Graphene Oxide and Its Application for Organic Electronic Devices

6. Simultaneous Modification of Bottom-Contact Electrode and Dielectric Surfaces for Organic Thin-Film Transistors Through Single-Component Spin-Cast Monolayers

7. Solvent-vapor annealing-induced growth, alignment, and patterning of π-conjugated supramolecular nanowires

8. Effect of the phenyl ring orientation in the polystyrene buffer layer on the performance of pentacene thin-film transistors

9. Study on the Formation of Self-Assembled Monolayers on Sol−Gel Processed Hafnium Oxide as Dielectric Layers

10. π-σ-Phosphonic Acid Organic Monolayer/Sol-Gel Hafnium Oxide Hybrid Dielectrics for Low-Voltage Organic Transistors

11. Efficient Polymer Solar Cells Based on the Copolymers of Benzodithiophene and Thienopyrroledione

12. A Simple and Effective Way of Achieving Highly Efficient and Thermally Stable Bulk-Heterojunction Polymer Solar Cells Using Amorphous Fullerene Derivatives as Electron Acceptor

13. High Performance Amorphous Metallated π-Conjugated Polymers for Field-Effect Transistors and Polymer Solar Cells

14. Solvent-dispersed benzothiadiazole-tetrathiafulvalene single-crystal nanowires and their application in field-effect transistors

15. Solid-State Densification of Spun-Cast Self-Assembled Monolayers for Use in Ultra-Thin Hybrid Dielectrics

16. Multifunctional phosphonic acid self-assembled monolayers on metal oxides as dielectrics, interface modification layers and semiconductors for low-voltage high-performance organic field-effect transistors

17. Molecular friction dissipation and mode coupling in organic monolayers and polymer films

18. Spin-cast and patterned organophosphonate self-assembled monolayer dielectrics on metal-oxide-activated Si

20. π-σ-Phosphonic acid organic monolayer–amorphous sol–gel hafnium oxide hybrid dielectric for low-voltage organic transistors on plastic.

21. Interfacial modification to improve inverted polymer solar cells.

24. Organic Thin-Film Transistors: Simultaneous Modification of Bottom-Contact Electrode and Dielectric Surfaces for Organic Thin-Film Transistors Through Single-Component Spin-Cast Monolayers (Adv. Funct. Mater. 8/2011)

25. Conjugated polymers based on C, Si and N-bridged dithiophene and thienopyrroledione units: synthesis, field-effect transistors and bulk heterojunction polymer solar cells

27. Graphene oxide nanosheets based organic field effect transistor for nonvolatile memory applications

28. Threshold voltage control in organic thin film transistors with dielectric layer modified by a genetically engineered polypeptide

29. Low-voltage high-performance organic thin film transistors with a thermally annealed polystyrene/hafnium oxide dielectric

30. Phosphonic acid self-assembled monolayer and amorphous hafnium oxide hybrid dielectric for high performance polymer thin film transistors on plastic substrates

31. Low-voltage high-performance C60 thin film transistors via low-surface-energy phosphonic acid monolayer/hafnium oxide hybrid dielectric

32. Low-voltage organic thin-film transistors with π-σ-phosphonic acid molecular dielectric monolayers

33. Interfacial modification to improve inverted polymer solar cells

34. Conjugated polymers based on C, Si and N-bridged dithiophene and thienopyrroledione units: synthesis, field-effect transistors and bulk heterojunction polymer solar cells.

41. Solvent-vapor annealing-induced growth, alignment, and patterning of π-conjugated supramolecular nanowires.

46. Bicyclists Arrive in New York City after Riding Cross Country to Promote Sustainable Living; Recent College Grads Ride Bikes Across United States, Raise Funds for American Red Cross

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