The Experts below are selected from a list of 189 Experts worldwide ranked by ideXlab platform

Erio Tosatti - One of the best experts on this subject based on the ideXlab platform.

  • smallest Archimedean Screw facet dynamics and friction in multiwalled nanotubes
    Nano Letters, 2017
    Co-Authors: Roberto Guerra, Itai Leven, Andrea Vanossi, Oded Hod, Erio Tosatti
    Abstract:

    We identify a new material phenomenon, where minute mechanical manipulations induce pronounced global structural reconfigurations in faceted multiwalled nanotubes. This behavior has strong implications on the tribological properties of these systems and may be the key to understand the enhanced interwall friction recently measured for boron-nitride nanotubes with respect to their carbon counterparts. Notably, the fast rotation of helical facets in these systems upon coaxial sliding may serve as a nanoscale Archimedean Screw for directional transport of physisorbed molecules.

  • Smallest Archimedean Screw: Facet Dynamics and Friction in Multiwalled Nanotubes
    2017
    Co-Authors: Roberto Guerra, Itai Leven, Andrea Vanossi, Oded Hod, Erio Tosatti
    Abstract:

    We identify a new material phenomenon, where minute mechanical manipulations induce pronounced global structural reconfigurations in faceted multiwalled nanotubes. This behavior has strong implications on the tribological properties of these systems and may be the key to understand the enhanced interwall friction recently measured for boron-nitride nanotubes with respect to their carbon counterparts. Notably, the fast rotation of helical facets in these systems upon coaxial sliding may serve as a nanoscale Archimedean Screw for directional transport of physisorbed molecules

  • The Smallest Archimedean Screw : Facet Dynamics and Friction in Multi-Walled Nanotubes
    'American Chemical Society (ACS)', 2017
    Co-Authors: Roberto Guerra, Itai Leven, Andrea Vanossi, Oded Hod, Erio Tosatti
    Abstract:

    We identify a new material phenomenon, where minute mechanical manipulations induce pronounced global structural reconfigurations in faceted multi-walled nanotubes. This behavior has strong implications on the tribological properties of these systems and may be the key to understand the enhanced inter-wall friction recently measured for boron-nitride nanotubes with respect to their carbon counterparts. Notably, the fast rotation of helical facets in these systems upon coaxial sliding may serve as a nanoscale Archimedean Screw for directional transport of physisorbed molecules

Roberto Guerra - One of the best experts on this subject based on the ideXlab platform.

  • smallest Archimedean Screw facet dynamics and friction in multiwalled nanotubes
    Nano Letters, 2017
    Co-Authors: Roberto Guerra, Itai Leven, Andrea Vanossi, Oded Hod, Erio Tosatti
    Abstract:

    We identify a new material phenomenon, where minute mechanical manipulations induce pronounced global structural reconfigurations in faceted multiwalled nanotubes. This behavior has strong implications on the tribological properties of these systems and may be the key to understand the enhanced interwall friction recently measured for boron-nitride nanotubes with respect to their carbon counterparts. Notably, the fast rotation of helical facets in these systems upon coaxial sliding may serve as a nanoscale Archimedean Screw for directional transport of physisorbed molecules.

  • Smallest Archimedean Screw: Facet Dynamics and Friction in Multiwalled Nanotubes
    2017
    Co-Authors: Roberto Guerra, Itai Leven, Andrea Vanossi, Oded Hod, Erio Tosatti
    Abstract:

    We identify a new material phenomenon, where minute mechanical manipulations induce pronounced global structural reconfigurations in faceted multiwalled nanotubes. This behavior has strong implications on the tribological properties of these systems and may be the key to understand the enhanced interwall friction recently measured for boron-nitride nanotubes with respect to their carbon counterparts. Notably, the fast rotation of helical facets in these systems upon coaxial sliding may serve as a nanoscale Archimedean Screw for directional transport of physisorbed molecules

  • The Smallest Archimedean Screw : Facet Dynamics and Friction in Multi-Walled Nanotubes
    'American Chemical Society (ACS)', 2017
    Co-Authors: Roberto Guerra, Itai Leven, Andrea Vanossi, Oded Hod, Erio Tosatti
    Abstract:

    We identify a new material phenomenon, where minute mechanical manipulations induce pronounced global structural reconfigurations in faceted multi-walled nanotubes. This behavior has strong implications on the tribological properties of these systems and may be the key to understand the enhanced inter-wall friction recently measured for boron-nitride nanotubes with respect to their carbon counterparts. Notably, the fast rotation of helical facets in these systems upon coaxial sliding may serve as a nanoscale Archimedean Screw for directional transport of physisorbed molecules

Oded Hod - One of the best experts on this subject based on the ideXlab platform.

  • smallest Archimedean Screw facet dynamics and friction in multiwalled nanotubes
    Nano Letters, 2017
    Co-Authors: Roberto Guerra, Itai Leven, Andrea Vanossi, Oded Hod, Erio Tosatti
    Abstract:

    We identify a new material phenomenon, where minute mechanical manipulations induce pronounced global structural reconfigurations in faceted multiwalled nanotubes. This behavior has strong implications on the tribological properties of these systems and may be the key to understand the enhanced interwall friction recently measured for boron-nitride nanotubes with respect to their carbon counterparts. Notably, the fast rotation of helical facets in these systems upon coaxial sliding may serve as a nanoscale Archimedean Screw for directional transport of physisorbed molecules.

  • Smallest Archimedean Screw: Facet Dynamics and Friction in Multiwalled Nanotubes
    2017
    Co-Authors: Roberto Guerra, Itai Leven, Andrea Vanossi, Oded Hod, Erio Tosatti
    Abstract:

    We identify a new material phenomenon, where minute mechanical manipulations induce pronounced global structural reconfigurations in faceted multiwalled nanotubes. This behavior has strong implications on the tribological properties of these systems and may be the key to understand the enhanced interwall friction recently measured for boron-nitride nanotubes with respect to their carbon counterparts. Notably, the fast rotation of helical facets in these systems upon coaxial sliding may serve as a nanoscale Archimedean Screw for directional transport of physisorbed molecules

  • The Smallest Archimedean Screw : Facet Dynamics and Friction in Multi-Walled Nanotubes
    'American Chemical Society (ACS)', 2017
    Co-Authors: Roberto Guerra, Itai Leven, Andrea Vanossi, Oded Hod, Erio Tosatti
    Abstract:

    We identify a new material phenomenon, where minute mechanical manipulations induce pronounced global structural reconfigurations in faceted multi-walled nanotubes. This behavior has strong implications on the tribological properties of these systems and may be the key to understand the enhanced inter-wall friction recently measured for boron-nitride nanotubes with respect to their carbon counterparts. Notably, the fast rotation of helical facets in these systems upon coaxial sliding may serve as a nanoscale Archimedean Screw for directional transport of physisorbed molecules

Andrea Vanossi - One of the best experts on this subject based on the ideXlab platform.

  • smallest Archimedean Screw facet dynamics and friction in multiwalled nanotubes
    Nano Letters, 2017
    Co-Authors: Roberto Guerra, Itai Leven, Andrea Vanossi, Oded Hod, Erio Tosatti
    Abstract:

    We identify a new material phenomenon, where minute mechanical manipulations induce pronounced global structural reconfigurations in faceted multiwalled nanotubes. This behavior has strong implications on the tribological properties of these systems and may be the key to understand the enhanced interwall friction recently measured for boron-nitride nanotubes with respect to their carbon counterparts. Notably, the fast rotation of helical facets in these systems upon coaxial sliding may serve as a nanoscale Archimedean Screw for directional transport of physisorbed molecules.

  • Smallest Archimedean Screw: Facet Dynamics and Friction in Multiwalled Nanotubes
    2017
    Co-Authors: Roberto Guerra, Itai Leven, Andrea Vanossi, Oded Hod, Erio Tosatti
    Abstract:

    We identify a new material phenomenon, where minute mechanical manipulations induce pronounced global structural reconfigurations in faceted multiwalled nanotubes. This behavior has strong implications on the tribological properties of these systems and may be the key to understand the enhanced interwall friction recently measured for boron-nitride nanotubes with respect to their carbon counterparts. Notably, the fast rotation of helical facets in these systems upon coaxial sliding may serve as a nanoscale Archimedean Screw for directional transport of physisorbed molecules

  • The Smallest Archimedean Screw : Facet Dynamics and Friction in Multi-Walled Nanotubes
    'American Chemical Society (ACS)', 2017
    Co-Authors: Roberto Guerra, Itai Leven, Andrea Vanossi, Oded Hod, Erio Tosatti
    Abstract:

    We identify a new material phenomenon, where minute mechanical manipulations induce pronounced global structural reconfigurations in faceted multi-walled nanotubes. This behavior has strong implications on the tribological properties of these systems and may be the key to understand the enhanced inter-wall friction recently measured for boron-nitride nanotubes with respect to their carbon counterparts. Notably, the fast rotation of helical facets in these systems upon coaxial sliding may serve as a nanoscale Archimedean Screw for directional transport of physisorbed molecules

Itai Leven - One of the best experts on this subject based on the ideXlab platform.

  • smallest Archimedean Screw facet dynamics and friction in multiwalled nanotubes
    Nano Letters, 2017
    Co-Authors: Roberto Guerra, Itai Leven, Andrea Vanossi, Oded Hod, Erio Tosatti
    Abstract:

    We identify a new material phenomenon, where minute mechanical manipulations induce pronounced global structural reconfigurations in faceted multiwalled nanotubes. This behavior has strong implications on the tribological properties of these systems and may be the key to understand the enhanced interwall friction recently measured for boron-nitride nanotubes with respect to their carbon counterparts. Notably, the fast rotation of helical facets in these systems upon coaxial sliding may serve as a nanoscale Archimedean Screw for directional transport of physisorbed molecules.

  • Smallest Archimedean Screw: Facet Dynamics and Friction in Multiwalled Nanotubes
    2017
    Co-Authors: Roberto Guerra, Itai Leven, Andrea Vanossi, Oded Hod, Erio Tosatti
    Abstract:

    We identify a new material phenomenon, where minute mechanical manipulations induce pronounced global structural reconfigurations in faceted multiwalled nanotubes. This behavior has strong implications on the tribological properties of these systems and may be the key to understand the enhanced interwall friction recently measured for boron-nitride nanotubes with respect to their carbon counterparts. Notably, the fast rotation of helical facets in these systems upon coaxial sliding may serve as a nanoscale Archimedean Screw for directional transport of physisorbed molecules

  • The Smallest Archimedean Screw : Facet Dynamics and Friction in Multi-Walled Nanotubes
    'American Chemical Society (ACS)', 2017
    Co-Authors: Roberto Guerra, Itai Leven, Andrea Vanossi, Oded Hod, Erio Tosatti
    Abstract:

    We identify a new material phenomenon, where minute mechanical manipulations induce pronounced global structural reconfigurations in faceted multi-walled nanotubes. This behavior has strong implications on the tribological properties of these systems and may be the key to understand the enhanced inter-wall friction recently measured for boron-nitride nanotubes with respect to their carbon counterparts. Notably, the fast rotation of helical facets in these systems upon coaxial sliding may serve as a nanoscale Archimedean Screw for directional transport of physisorbed molecules