F
Francesco Mauri
Researcher at Sapienza University of Rome
Publications - 369
Citations - 83302
Francesco Mauri is an academic researcher from Sapienza University of Rome. The author has contributed to research in topics: Phonon & Graphene. The author has an hindex of 85, co-authored 352 publications receiving 69332 citations. Previous affiliations of Francesco Mauri include University of Texas at Arlington & University of California, Berkeley.
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Quantum Monte Carlo study of the Protonated Water Dimer
TL;DR: In this paper, an extensive theoretical study of the protonated water dimer H5O2+ (Zundel ion) by means of the highly correlated variational Monte Carlo and lattice regularized Monte Carlo approaches is presented.
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High-resolution solid state NMR experiments for the characterization of calcium phosphate biomaterials and biominerals
Frédérique Pourpoint,Cristina Coelho Diogo,Christel Gervais,Christian Bonhomme,Franck Fayon,Sara Laurencin Dalicieux,Isabelle Gennero,Jean-Pierre Salles,Andrew P. Howes,Ray Dupree,John V. Hanna,Mark E. Smith,Francesco Mauri,Gilles Guerrero,P. Hubert Mutin,Danielle Laurencin +15 more
TL;DR: In this paper, the advantages of performing fast Magic Angle Spinning NMR experiments at high magnetic fields is emphasized, notably because it allows very small volumes of sample to be analyzed.
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Reducing the thermal conductivity of carbon nanotubes below the random isotope limit
TL;DR: In this paper, the authors find that segmented isotopic disorder patterns may reduce the thermal conductivity of pristine carbon nanotubes below the uncorrelated disorder value, which is a result of the interplay between different length scales in the phonon scattering process.
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Energy relaxation mechanism of hot-electron ensembles in GaAs: Theoretical and experimental study of its temperature dependence
Jelena Sjakste,Nathalie Vast,Giuliana Barbarino,Matteo Calandra,Francesco Mauri,Jun'ichi Kanasaki,Hiroshi Tanimura,Katsumi Tanimura +7 more
TL;DR: In this article, the authors studied the energy relaxation of hot-electron ensembles in GaAs, by means of ab initio calculations and time-, energy-, and momentum-resolved spectroscopy.
Posted Content
Quantum Monte Carlo study of the protonated water dimer
TL;DR: In this article, an extensive theoretical study of the protonated water dimer (Zundel ion) by means of the highly correlated variational Monte Carlo and lattice regularized Monte Carlo approaches is presented.