Publications
“Tailored Formation of N-Doped Nanoarchitectures by Diffusion-Controlled on-Surface (Cyclo)-Dehydrogenation of Heteroaromatics”, Acs Nano, vol. 7, pp. 3676–3684, 2013.
, “Temperature-Driven Reversible Rippling and Bonding of a Graphene Super lattice”, Acs Nano, vol. 7, pp. 6955–6963, 2013.
, “The TeraFERMI terahertz source at the seeded FERMI free-electron-laser facility”, Review of Scientific Instruments, vol. 84, p. 022702, 2013.
, “Thermal effects on Co/Mo2C multilayer mirrors studied by soft x-ray standing wave enhanced photoemission spectroscopy”, Damage To Vuv, Euv, and X-ray Optics Iv; and Euv and X-ray Optics: Synergy Between Laboratory and Space Iii, vol. 8777, p. SPIE, 2013.
, “Thermal effects on Co/Mo2C multilayer mirrors studied by soft x-ray standing wave enhanced photoemission spectroscopy”, Damage To Vuv, Euv, and X-ray Optics Iv; and Euv and X-ray Optics: Synergy Between Laboratory and Space Iii, vol. 8777, p. SPIE, 2013.
, “Topological phase transitions driven by non-Abelian gauge potentials in optical square lattices”, Physical Review A, vol. 88, p. 053619, 2013.
, “Understanding Energy-Level Alignment in Donor-Acceptor/Metal Interfaces from Core-Level Shifts”, Acs Nano, vol. 7, pp. 6914–6920, 2013.
, “The amorphous Zn biomineralization at Naracauli stream, Sardinia: electron microscopy and X-ray absorption spectroscopy”, Environmental Science and Pollution Research, vol. 21, pp. 6775–6782, 2014.
, “Antiphase Boundaries Accumulation Forming a New C-60 Decoupled Crystallographic Phase on the Rutile TiO2(110)-(1 x 1) Surface”, Journal of physical chemistry. C, vol. 118, pp. 27318–27324, 2014.
, “Antiphase Boundaries Accumulation Forming a New C-60 Decoupled Crystallographic Phase on the Rutile TiO2(110)-(1 x 1) Surface”, Journal of physical chemistry. C, vol. 118, pp. 27318–27324, 2014.
, “The Boson Peak of Amyloid Fibrils: Probing the Softness of Protein Aggregates by Inelastic Neutron Scattering”, Journal of Physical Chemistry B, vol. 118, pp. 2913–2923, 2014.
, “Bottom-up approach for the low-cost synthesis of graphene-alumina nanosheet interfaces using bimetallic alloys”, Nature communications, vol. 5, p. art_n_506, 2014.
, “Bottom-up approach for the low-cost synthesis of graphene-alumina nanosheet interfaces using bimetallic alloys”, Nature communications, vol. 5, p. art_n_506, 2014.
, “Bottom-up approach for the low-cost synthesis of graphene-alumina nanosheet interfaces using bimetallic alloys”, Nature communications, vol. 5, p. art_n_506, 2014.
, “Bottom-up approach for the low-cost synthesis of graphene-alumina nanosheet interfaces using bimetallic alloys”, Nature communications, vol. 5, p. art_n_506, 2014.
, “Carrier Localization in Nanocrystalline Silicon”, Journal of Physical Chemistry C, vol. 118, pp. 13417–13423, 2014.
, “Cell Adhesion on Silicon Nanowires”, Biophysical Journal, vol. 106, p. Biophys Soc, 2014.
, “Characterisation of the electronic structure of some stable nitroxyl radicals using variable energy photoelectron spectroscopy”, Physical Chemistry Chemical Physics, vol. 16, pp. 10734–10742, 2014.
, “Chemical, electronic, and magnetic structure of LaFeCoSi alloy: Surface and bulk properties”, Journal of applied physics, vol. 115, pp. 203901-1–203901-9, 2014.
, “Chemical states and ferromagnetism in heavily Mn-substituted zinc oxide thin films”, Journal of applied physics, vol. 115, pp. 153902-1–153902-5, 2014.
, “Co/Mo2C multilayer as X- ray mirror: Optical and thermal performances”, Physica status solidi. B, Basic research, vol. 251, pp. 803–808, 2014.
, “Co/Mo2C multilayer as X- ray mirror: Optical and thermal performances”, Physica status solidi. B, Basic research, vol. 251, pp. 803–808, 2014.
, “The competition for graphene formation on Re(0001): A complex interplay between carbon segregation, dissolution and carburisation”, Carbon, vol. 73, pp. 389–402, 2014.
, “The competition for graphene formation on Re(0001): A complex interplay between carbon segregation, dissolution and carburisation”, Carbon, vol. 73, pp. 389–402, 2014.
, “Control of the Polarization of a Vacuum-Ultraviolet, High-Gain, Free-Electron Laser”, Physical review. X, vol. 4, p. 041040, 2014.
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