15 research outputs found

    Vibrational Properties of Nanoscale Materials: From Nanoparticles to Nanocrystalline Materials

    Full text link
    The vibrational density of states (VDOS) of nanoclusters and nanocrystalline materials are derived from molecular-dynamics simulations using empirical tight-binding potentials. The results show that the VDOS inside nanoclusters can be understood as that of the corresponding bulk system compressed by the capillary pressure. At the surface of the nanoparticles the VDOS exhibits a strong enhancement at low energies and shows structures similar to that found near flat crystalline surfaces. For the nanocrystalline materials an increased VDOS is found at high and low phonon energies, in agreement with experimental findings. The individual VDOS contributions from the grain centers, grain boundaries, and internal surfaces show that, in the nanocrystalline materials, the VDOS enhancements are mainly caused by the grain-boundary contributions and that surface atoms play only a minor role. Although capillary pressures are also present inside the grains of nanocrystalline materials, their effect on the VDOS is different than in the cluster case which is probably due to the inter-grain coupling of the modes via the grain-boundaries.Comment: 10 pages, 7 figures, accepted for publication in Phys. Rev.

    BMBF-Fördernummer: MTK0546

    No full text

    Hydraulische Wirksamkeit durchlaessiger Buhnen: Laborexperimente und Naturuntersuchungen. - Morphodynamik in der Brandungszone sandiger Kuesten: Konzentrationsverteilung suspendierter Sedimente

    No full text
    First part is the doctoral thesis of Trampenau, T.SIGLEAvailable from TIB Hannover: RA 1164(146) / FIZ - Fachinformationszzentrum Karlsruhe / TIB - Technische InformationsbibliothekDEGerman
    corecore