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Mirko Prato

Researcher at Istituto Italiano di Tecnologia

Publications -  415
Citations -  26544

Mirko Prato is an academic researcher from Istituto Italiano di Tecnologia. The author has contributed to research in topics: Gravitational wave & LIGO. The author has an hindex of 76, co-authored 370 publications receiving 21189 citations. Previous affiliations of Mirko Prato include University of Genoa & California Institute of Technology.

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Photocatalytic Inactivation of Plant Pathogenic Bacteria Using TiO2 Nanoparticles Prepared Hydrothermally.

TL;DR: It is found that fine-tuning of the structural properties by modulating the time and temperature of the hydrothermal treatment influenced the photocatalytic properties of the TiO2 NPs considerably.
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Virgo calibration and reconstruction of the gravitationnal wave strain during VSR1

T. Accadia, +172 more
TL;DR: In this paper, a non-linear reconstruction of the differential arm length variations in free swinging Michelson configurations is used to calibrate the frequency dependent response of the Virgo mirror actuators and derive the detector in-loop response and sensitivity within 5%.
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Sustainable lithium-ion batteries based on Metals-free tannery waste biochar

TL;DR: In this article , low-cost and environmentally friendly materials from leather manufacturing waste were investigated for application in Electrochemical Energy Storage Devices (EESDs), and metals-free leather shaving waste (LSW) was employed as precursor to design EESDs.
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Metastable CdTe@HgTe Core@Shell Nanostructures Obtained by Partial Cation Exchange Evolve into Sintered CdTe Films Upon Annealing.

TL;DR: This strategy suggests that CE protocols might be exploited to lower the overall costs of production of CdTe thin films employed in photovoltaic technology, which are currently fabricated at high temperatures (above 350 °C), using post-process ligand-stripping steps.
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Work Function Tuning in Hydrothermally Synthesized Vanadium-Doped MoO3 and Co3O4 Mesostructures for Energy Conversion Devices

TL;DR: In this article, the authors have explored strategies for the doping of MoO3 and Co3O4 with vanadium (V) ions that, when combined with oxygen in V2O5, produce a high work function MO.