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71 results on '"Kar-Narayan S"'

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1. Exploring piezoelectric properties of III-V nanowires using piezo-response force microscopy

2. Direct observation of shear piezoelectricity in poly-$\small \text{L}$-lactic acid nanowires

3. Tunnelling anisotropic magnetoresistance at La0.67Sr0.33MnO3-graphene interfaces.

4. Direct electrocaloric measurement of 0.9Pb(Mg1/3Nb2/3)O3-0.1PbTiO3 films using scanning thermal microscopy.

6. Polymer-based nanopiezoelectric generators for energy harvesting applications.

7. Caloric materials near ferroic phase transitions.

8. Finite-element optimisation of electrocaloric multilayer capacitors.

11. Predicted cooling powers for multilayer capacitors based on various electrocaloric and electrode materials.

12. Converse magnetoelectric coupling in multilayer capacitors.

13. Template-Assisted Hydrothermal Growth of Aligned Zinc Oxide Nanowires for Piezoelectric Energy Harvesting Applications

14. Piezoelectric Nylon-11 Nanowire Arrays Grown by Template Wetting for Vibrational Energy Harvesting Applications

16. Direct electrocaloric measurements of a multilayer capacitor using scanning thermal microscopy and infra-red imaging.

18. Sliding charge-density waves in manganites.

19. Enhanced thermoelectric properties of flexible aerosol-jet printed carbon nanotube-based nanocomposites

20. Aerosol-Jet Printed Fine-Featured Triboelectric Sensors for Motion Sensing

21. Compositionally Graded Organic–Inorganic Nanocomposites for Enhanced Thermoelectric Performance

22. Caloric Effects in Perovskite Oxides

23. The thickness-dependent response of aerosol-jet-printed ultrathin high-aspect-ratio electrochemical microactuators.

25. Advanced Materials for Energy Harvesting and Soft Robotics: Emerging Frontiers to Enhance Piezoelectric Performance and Functionality.

26. Fine-Scale Aerosol-Jet Printing of Luminescent Metal-Organic Framework Nanosheets.

27. Tailoring of Self-Healable Polydimethylsiloxane Films for Mechanical Energy Harvesting.

28. Controllable Multimodal Actuation in Fully Printed Ultrathin Micro-Patterned Electrochemical Actuators.

29. Wear-Resistant Smart Textiles Using Nylon-11 Triboelectric Yarns.

31. Precursor-Led Grain Boundary Engineering for Superior Thermoelectric Performance in Niobium Strontium Titanate.

32. 3D-printed hierarchical pillar array electrodes for high-performance semi-artificial photosynthesis.

33. Surface Potential Driven Water Harvesting from Fog.

34. Aerosol-jet-printed, conformable microfluidic force sensors.

35. Triboelectric Yarns with Electrospun Functional Polymer Coatings for Highly Durable and Washable Smart Textile Applications.

36. Route to High-Performance Micro-solid Oxide Fuel Cells on Metallic Substrates.

37. FullyPrinted Flexible Plasmonic Metafilms with Directional Color Dynamics.

38. Time-resolved open-circuit conductive atomic force microscopy for direct electromechanical characterisation.

39. Biosensors Based on Mechanical and Electrical Detection Techniques.

40. Unprecedented dipole alignment in α-phase nylon-11 nanowires for high-performance energy-harvesting applications.

41. Aerosol-jet printing facilitates the rapid prototyping of microfluidic devices with versatile geometries and precise channel functionalization.

42. Poly-l-Lactic Acid Nanotubes as Soft Piezoelectric Interfaces for Biology: Controlling Cell Attachment via Polymer Crystallinity.

43. Enhanced Piezoelectricity of Electrospun Polyvinylidene Fluoride Fibers for Energy Harvesting.

44. Strain-Mediated Bending of InP Nanowires through the Growth of an Asymmetric InAs Shell.

45. Self-assembly of collagen bundles and enhanced piezoelectricity induced by chemical crosslinking.

46. Nanoscale electromechanical properties of template-assisted hierarchical self-assembled cellulose nanofibers.

47. The effect of crystal structure on the electromechanical properties of piezoelectric Nylon-11 nanowires.

48. Fully Printed Organic-Inorganic Nanocomposites for Flexible Thermoelectric Applications.

49. Mechanical Energy Harvesting Performance of Ferroelectric Polymer Nanowires Grown via Template-Wetting.

50. Mapping piezoelectric response in nanomaterials using a dedicated non-destructive scanning probe technique.

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