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1. Highly insulating thermoplastic blends comprising a styrenic copolymer for direct‐current power cable insulation

2. Toughening of a Soft Polar Polythiophene through Copolymerization with Hard Urethane Segments

3. Energy harvesting textiles for a rainy day: woven piezoelectrics based on melt-spun PVDF microfibres with a conducting core

4. Designing for a Wearable Affective Interface for the NAO Robot: A Study of Emotion Conveyance by Touch

7. Bulk-Processed Pd Nanocube–Poly(methyl methacrylate) Nanocomposites as Plasmonic Plastics for Hydrogen Sensing

8. Hydrophobization of arabinoxylan with n-butyl glycidyl ether yields stretchable thermoplastic materials

9. High‐temperature creep resistant ternary blends based on polyethylene and polypropylene for thermoplastic power cable insulation

10. Side chains affect the melt processing and stretchability of arabinoxylan biomass-based thermoplastic films

11. Green Conducting Cellulose Yarns for Machine-Sewn Electronic Textiles

12. Machine-Washable Conductive Silk Yarns with a Composite Coating of Ag Nanowires and PEDOT:PSS

13. Recyclable Polyethylene Insulation via Reactive Compounding with a Maleic Anhydride-Grafted Polypropylene

14. Tuning of the elastic modulus of a soft polythiophene through molecular doping

15. Conducting materials as building blocks for electronic textiles

16. Repurposing Poly(3-hexylthiophene) as a Conductivity-Reducing Additive for Polyethylene-Based High-Voltage Insulation

17. Sequential doping of solid chunks of a conjugated polymer for body-heat-powered thermoelectric modules

18. A Combined Theoretical and Experimental Study of the Polymer Matrix-Mediated Stress Transfer in a Cellulose Nanocomposite

19. Structural Composition Explains Differences in Stretchability for Compression-Molded Arabinoxylan-Based Thermoplastic Films

20. Oxidation Level and Glycidyl Ether Structure Determine Thermal Processability and Thermomechanical Properties of Arabinoxylan-Derived Thermoplastics

21. Enhanced Thermoelectric Power Factor of Tensile Drawn Poly(3-hexylthiophene)

22. Electrically Conducting Elastomeric Fibers with High Stretchability and Stability

23. Robust PEDOT:PSS Wet‐Spun Fibers for Thermoelectric Textiles

24. All-Polymer Conducting Fibers and 3D Prints via Melt Processing and Templated Polymerization

25. The impacts of the EU ETS on Norwegian plants’ environmental and economic performance

26. Toughening of a Soft Polar Polythiophene through Copolymerization with Hard Urethane Segments

27. A polymer-based textile thermoelectric generator for wearable energy harvesting

28. From Single Molecules to Thin Film Electronics, Nanofibers, e‐Textiles and Power Cables: Bridging Length Scales with Organic Semiconductors

29. Thermally Activated in Situ Doping Enables Solid-State Processing of Conducting Polymers

30. Textile sensing glove with piezoelectric PVDF fibers and printed electrodes of PEDOT:PSS

31. All-Organic Textile Thermoelectrics with Carbon-Nanotube-Coated n-Type Yarns

32. Machine-Washable PEDOT:PSS Dyed Silk Yarns for Electronic Textiles

33. Poling and characterization of piezoelectric polymer fibers for use in textile sensors

34. Analysis of the torsion angle distribution of poly(vinylidene fluoride) in the melt

35. Enhancement of β phase crystals formation with the use of nanofillers in PVDF films and fibres

36. Melt spinning of β-phase poly(vinylidene fluoride) yarns with and without a conductive core

37. Roll‐to‐Roll Dyed Conducting Silk Yarns: A Versatile Material for E‐Textile Devices

38. The impacts of the EU ETS on Norwegian plants' environmental and economic performance

39. MWNT reinforced melamine-formaldehyde containing alpha-cellulose

40. Designing for a Wearable Affective Interface for the NAO Robot: A Study of Emotion Conveyance by Touch

41. The multicopy sRNA LhrC controls expression of the oligopeptide-binding protein OppA in Listeria monocytogenes

42. En analyse på bedriftsnivå av EU ETS og dens innvirkning på norske bedrifters lønnsomhet og CO2-utslipp

46. Melt spinning of poly(vinylidene fluoride) fibers and the influence of spinning parameters on β-phase crystallinity

47. Melt spinning of β‐phase poly(vinylidene fluoride) yarns with and without a conductive core.

48. Melt spinning of poly(vinylidene fluoride) fibers and the influence of spinning parameters on β‐phase crystallinity.

49. Electrically conducting fibres for e-textiles: An open playground for conjugated polymers and carbon nanomaterials

50. Energy harvesting textiles for a rainy day: woven piezoelectrics based on melt-spun PVDF microfibres with a conducting core

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