Publications
“Timing methodologies and studies at the FERMI free-electron laser”, Journal of Synchrotron Radiation, vol. 25, pp. 44-51, 2018.
, “Timing methodologies and studies at the FERMI free-electron laser”, Journal of Synchrotron Radiation, vol. 25, pp. 44-51, 2018.
, “Timing methodologies and studies at the FERMI free-electron laser”, Journal of Synchrotron Radiation, vol. 25, pp. 44-51, 2018.
, “Timing methodologies and studies at the FERMI free-electron laser”, Journal of Synchrotron Radiation, vol. 25, pp. 44-51, 2018.
, “Timing methodologies and studies at the FERMI free-electron laser”, Journal of Synchrotron Radiation, vol. 25, pp. 44-51, 2018.
, “Timing methodologies and studies at the FERMI free-electron laser”, Journal of Synchrotron Radiation, vol. 25, pp. 44-51, 2018.
, “Timing methodologies and studies at the FERMI free-electron laser”, Journal of Synchrotron Radiation, vol. 25, pp. 44-51, 2018.
, “Timing methodologies and studies at the FERMI free-electron laser”, Journal of Synchrotron Radiation, vol. 25, pp. 44-51, 2018.
, “Timing methodologies and studies at the FERMI free-electron laser”, Journal of Synchrotron Radiation, vol. 25, pp. 44-51, 2018.
, “Tuning gold nanoparticles plasmonic properties by DNA nanotechnology”, Methods in Molecular Biology, vol. 1811, pp. 279-297, 2018.
, “Tuning spin-charge interconversion with quantum confinement in ultrathin bismuth films”, Physical Review B, vol. 98, 2018.
, “Tuning ultrafast electron injection dynamics at organic-graphene/metal interfaces”, Nanoscale, vol. 10, pp. 8014-8022, 2018.
, “Tuning ultrafast electron injection dynamics at organic-graphene/metal interfaces”, Nanoscale, vol. 10, pp. 8014-8022, 2018.
, “Two-step growth mechanism of supported Co3O4-based sea-urchin like hierarchical nanostructures”, Applied Surface Science, vol. 439, pp. 876-882, 2018.
, “Two-step growth mechanism of supported Co3O4-based sea-urchin like hierarchical nanostructures”, Applied Surface Science, vol. 439, pp. 876-882, 2018.
, “Two-step growth mechanism of supported Co3O4-based sea-urchin like hierarchical nanostructures”, Applied Surface Science, vol. 439, pp. 876-882, 2018.
, “Two-step growth mechanism of supported Co3O4-based sea-urchin like hierarchical nanostructures”, Applied Surface Science, vol. 439, pp. 876-882, 2018.
, “Two-step growth mechanism of supported Co3O4-based sea-urchin like hierarchical nanostructures”, Applied Surface Science, vol. 439, pp. 876-882, 2018.
, “Two-step growth mechanism of supported Co3O4-based sea-urchin like hierarchical nanostructures”, Applied Surface Science, vol. 439, pp. 876-882, 2018.
, “Two-step growth mechanism of supported Co3O4-based sea-urchin like hierarchical nanostructures”, Applied Surface Science, vol. 439, pp. 876-882, 2018.
, “Two-step growth mechanism of supported Co3O4-based sea-urchin like hierarchical nanostructures”, Applied Surface Science, vol. 439, pp. 876-882, 2018.
, “Ubiquitous formation of bulk Dirac cones and topological surface states from a single orbital manifold in transition-metal dichalcogenides”, Nature Materials, vol. 17, pp. 21-27, 2018.
, “Ubiquitous formation of bulk Dirac cones and topological surface states from a single orbital manifold in transition-metal dichalcogenides”, Nature Materials, vol. 17, pp. 21-27, 2018.
, “Ubiquitous formation of bulk Dirac cones and topological surface states from a single orbital manifold in transition-metal dichalcogenides”, Nature Materials, vol. 17, pp. 21-27, 2018.
, “Ubiquitous formation of bulk Dirac cones and topological surface states from a single orbital manifold in transition-metal dichalcogenides”, Nature Materials, vol. 17, pp. 21-27, 2018.
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