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2. The physical origin of rate promoting vibrations in enzymes revealed by structural rigidity

3. Universality of fold-encoded localized vibrations in enzymes

5. EQUILIBRIUM MOLECULAR DYNAMICS SIMULATIONS ON INTERFACIAL PHONON TRANSPORT

6. Tailoring properties of graphene with vacancies

7. Distinguishing between spatial coherence and temporal coherence of phonons

8. Adverse effects of polymer coating on heat transport at solid-liquid interface

9. Nanoscale Brownian heating by interacting magnetic dipolar particles

10. Carbon Nanotube Microarchitectures for Enhanced Thermal Conduction at Ultralow Mass Fraction in Polymer Composites

11. Distinguishing Different Isomers of the Photochromic CMTE Molecule on the Si(100) Surface Studied by STM

12. Efficient phonon blocking in SiC antiphase superlattice nanowires

13. A detailed microscopic study of the heat transfer at a water gold interface coated with a polymer

14. Thermal Interface Conductance Between Aluminum and Silicon by Molecular Dynamics Simulations

15. Electric polarizability of lipid bilayers The influence of the structure

16. Substrate-induced cross-plane thermal propagative modes in few-layer graphene

17. Classical to quantum transition of heat transfer between two silica clusters

18. Quantized Thermal Conductance of Nanowires at Room Temperature Due to Zenneck Surface-Phonon Polaritons

19. Thermal conductivity of nano-layered systems due to surface phonon-polaritons

20. Surface enhanced infrared absorption in dielectric thin films with ultra-strong confinement effects

21. Microscopic Description of Thermal Phonon Coherence : From Coherent Transport to Diffuse Interface Scattering in Superlattices

22. Heat Transport Along Polar Nanofilms Due to Surface Phonon-Polaritons

23. Few layer graphene based superlattices as efficient thermal insulators

24. Modelling of graphene and few-layer graphene heat spreaders for hot-spot cooling

25. Significant thickness dependence of the thermal resistance between few layer graphenes

26. A microscopic formulation of the phonon transmission at the nanoscale

27. Modulated SiC nanowires: Molecular dynamics study of their thermal properties

29. Thermal interface conductance in Si/Ge superlattices by equilibrium molecular dynamics

30. Large effects of pressure induced inelastic channels on interface thermal conductance

31. Dammaket al.Reply

32. Thermal resistance of metal nanowire junctions in the ballistic regime

33. Radiative heat transfer from a black body to dielectric nanoparticles

34. Quantum thermal bath for molecular dynamics simulation

35. Upper bound to the thermal conductivity of carbon nanotube pellets

36. Atomic-Scale Three-Dimensional Phononic Crystals With a Very Low Thermal Conductivity to Design Crystalline Thermoelectric Devices

37. Turning Carbon Nanotubes from Exceptional Heat Conductors into Insulators

38. Predominance of thermal contact resistance in a silicon nanowire on a planar substrate

39. Atomic Scale Three-Dimensional Phononic Crystals With Very Low Thermal Conductivities

40. Thermal Modeling of Atomic-Scale Three-Dimensional Phononic Crystals for Thermoelectric Applications

41. Atomic-Scale Three-Dimensional Phononic Crystals With a Lower Thermal Conductivity Than the Einstein Limit of Bulk Silicon

42. Thermal Design of Highly-Efficient Thermoelectric Materials With Atomic-Scale Three-Dimensional Phononic Crystals

43. Effects of anisotropy and size of polar nano thin films on their thermal conductivity due to surface phonon-polaritons

44. Anomalous thermal conductivity by surface phonon-polaritons of polar nano thin films due to their asymmetric surrounding media

45. Thermal conductivity and Kapitza resistance of diameter modulated SiC nanowires, a molecular dynamics study

46. Calculation of inter-plane thermal resistance of few-layer graphene from equilibrium molecular dynamics simulations

47. Surface Phonon Polariton Mediated Thermal Conduction of a Micrometric Glass Waveguide

48. Tunable superlattice in-plane thermal conductivity based on asperity sharpness at interfaces: Beyond Ziman’s model of specularity

50. Contribution to the study of heat relaxation in nanostructures of biological interest

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