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Nicola Patelli
Nicola Patelli
Bestätigte E-Mail-Adresse bei unibo.it
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Zitiert von
Zitiert von
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Hydrogen Desorption Below 150 °C in MgH2–TiH2 Composite Nanoparticles: Equilibrium and Kinetic Properties
N Patelli, M Calizzi, A Migliori, V Morandi, L Pasquini
The Journal of Physical Chemistry C 121 (21), 11166-11177, 2017
772017
Charge carrier dynamics and visible light photocatalysis in vanadium-doped TiO2 nanoparticles
G Rossi, L Pasquini, D Catone, A Piccioni, N Patelli, A Paladini, A Molinari, ...
Applied Catalysis B: Environmental 237, 603-612, 2018
622018
Interfaces within biphasic nanoparticles give a boost to magnesium-based hydrogen storage
N Patelli, A Migliori, V Morandi, L Pasquini
Nano Energy 72, 104654, 2020
392020
CO2 Hydrogenation over Unsupported Fe-Co Nanoalloy Catalysts
M Calizzi, R Mutschler, N Patelli, A Migliori, K Zhao, L Pasquini, A Züttel
Nanomaterials 10 (7), 1360, 2020
182020
Structure and magnetic properties of Fe-Co alloy nanoparticles synthesized by pulsed-laser inert gas condensation
N Patelli, F Cugini, D Wang, S Sanna, M Solzi, H Hahn, L Pasquini
Journal of Alloys and Compounds 890, 161863, 2022
162022
One-step synthesis of metal/oxide nanocomposites by gas phase condensation
N Patelli, A Migliori, V Morandi, L Pasquini
Nanomaterials 9 (2), 219, 2019
162019
Reversible metal‐hydride transformation in Mg‐Ti‐H nanoparticles at remarkably low temperatures
N Patelli, A Migliori, L Pasquini
ChemPhysChem 20 (10), 1325-1333, 2019
122019
Interface enthalpy-entropy competition in nanoscale metal hydrides
N Patelli, M Calizzi, L Pasquini
Inorganics 6 (1), 13, 2018
112018
Metal-hydride reversible transformation in Mg-Ti-H nanoparticles at remarkably low temperatures
N Patelli, A Migliori, L Pasquini
ChemPhysChem, 2019
22019
Apparato volumetrico per misure di assorbimento di idrogeno nei solidi
N Patelli
12013
Numerical and Experimental Study of Gas Phase Nanoparticle Synthesis Using NanoDOME
G La Civita, E Ugolini, N Patelli, A Piccioni, A Migliori, L Pasquini, ...
Nanomaterials 13 (8), 1317, 2023
2023
Gas-Phase Condensation of Nanoparticles and Nanocomposites for Energy Applications
N Patelli
alma, 2020
2020
Pushing the limits: reversible H2 exchange in Mg-Ti-H nanoparticles in the 100-150 C range
N Patelli
Sintesi di nanoparticelle composite con morfologia avanzata mediante condensazione in atmosfera inerte o reattiva
N Patelli
Sintesi di nanoparticelle composite con morfologia avanzata mediante condensazione in atmosfera inerte o reattiva
L Pasquini, DM Calizzi, N Patelli
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