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Dive into the research topics where Matteo Ghidelli is active.

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Featured researches published by Matteo Ghidelli.


ACS Nano | 2013

Hyperbranched quasi-1D nanostructures for solid-state dye-sensitized solar cells.

Luca Passoni; Farbod Ghods; Pablo Docampo; Agnese Abrusci; Javier Martí-Rujas; Matteo Ghidelli; Giorgio Divitini; Caterina Ducati; Maddalena Binda; Simone Guarnera; Andrea Bassi; C. S. Casari; Henry J. Snaith; Annamaria Petrozza; Fabio Di Fonzo

In this work we demonstrate hyperbranched nanostructures, grown by pulsed laser deposition, composed of one-dimensional anatase single crystals assembled in arrays of high aspect ratio hierarchical mesostructures. The proposed growth mechanism relies on a two-step process: self-assembly from the gas phase of amorphous TiO2 clusters in a forest of tree-shaped hierarchical mesostructures with high aspect ratio; oriented crystallization of the branches upon thermal treatment. Structural and morphological characteristics can be optimized to achieve both high specific surface area for optimal dye uptake and broadband light scattering thanks to the microscopic feature size. Solid-state dye sensitized solar cells fabricated with arrays of hyperbranched TiO2 nanostructures on FTO-glass sensitized with D102 dye showed a significant 66% increase in efficiency with respect to a reference mesoporous photoanode and reached a maximum efficiency of 3.96% (among the highest reported for this system). This result was achieved mainly thanks to an increase in photogenerated current directly resulting from improved light harvesting efficiency of the hierarchical photoanode. The proposed photoanode overcomes typical limitations of 1D TiO2 nanostructures applied to ss-DSC and emerges as a promising foundation for next-generation high-efficiency solid-state devices comprosed of dyes, polymers, or quantum dots as sensitizers.


Journal of Applied Physics | 2014

Multi-wavelength Raman scattering of nanostructured Al-doped zinc oxide

Valeria Russo; Matteo Ghidelli; P. Gondoni; C. S. Casari; A. Li Bassi

In this work we present a detailed Raman scattering investigation of zinc oxide and aluminum-doped zinc oxide (AZO) films characterized by a variety of nanoscale structures and morphologies and synthesized by pulsed laser deposition under different oxygen pressure conditions. The comparison of Raman spectra for pure ZnO and AZO films with similar morphology at the nano/mesoscale allows to investigate the relation between Raman features (peak or band positions, width, relative intensity) and material properties such as local structural order, stoichiometry, and doping. Moreover Raman measurements with three different excitation lines (532, 457, and 325u2009nm) point out a strong correlation between vibrational and electronic properties. This observation confirms the relevance of a multi-wavelength Raman investigation to obtain a complete structural characterization of advanced doped oxide materials.


Nanotechnology | 2012

Structure-dependent optical and electrical transport properties of nanostructured Al-doped ZnO

P. Gondoni; Matteo Ghidelli; F. Di Fonzo; Marco Carminati; Valeria Russo; A. Li Bassi; C. S. Casari

The structure-property relation of nanostructured Al-doped ZnO thin films has been investigated in detail through a systematic variation of structure and morphology, with particular emphasis on how they affect optical and electrical properties. A variety of structures, ranging from compact polycrystalline films to mesoporous, hierarchically organized cluster assemblies, are grown by pulsed laser deposition at room temperature at different oxygen pressures. We investigate the dependence of functional properties on structure and morphology and show how the correlation between electrical and optical properties can be studied to evaluate energy gap, conduction band effective mass and transport mechanisms. Understanding these properties opens up opportunities for specific applications in photovoltaic devices, where optimized combinations of conductivity, transparency and light scattering are required.


Thin Solid Films | 2012

Structural and functional properties of Al:ZnO thin films grown by Pulsed Laser Deposition at room temperature

P. Gondoni; Matteo Ghidelli; F. Di Fonzo; Valeria Russo; P. Bruno; Javier Martí-Rujas; C. E. Bottani; A. Li Bassi; C. S. Casari


Nanoscience and Nanotechnology Letters | 2013

Highly performing Al:ZnO thin films grown by Pulsed Laser Deposition at Room Temperature

P. Gondoni; Matteo Ghidelli; F. Di Fonzo; Vera Russo; P. Bruno; Javier Martí-Rujas; C. E. Bottani; A. Li Bassi; C. S. Casari


Journal of Physical Chemistry C | 2017

Microscopic Analysis of the Different Perchlorate Anions Intercalation Stages of Graphite

Rossella Yivlialin; Gianlorenzo Bussetti; Luigi Brambilla; C. Castiglioni; Matteo Tommasini; L. Duò; Matteo Passoni; Matteo Ghidelli; C. S. Casari; A. Li Bassi


Applied Surface Science | 2018

Engineering plasmonic nanostructured surfaces by pulsed laser deposition

Matteo Ghidelli; Luca Mascaretti; Beatrice Roberta Bricchi; Andrea Zapelli; Valeria Russo; C. S. Casari; Andrea Bassi


Materials & Design | 2018

Integration of plasmonic Au nanoparticles in TiO2 hierarchical structures in a single-step pulsed laser co-deposition

Beatrice Roberta Bricchi; Matteo Ghidelli; Luca Mascaretti; Andrea Zapelli; Valeria Russo; C. S. Casari; Giancarlo Terraneo; Ivano Alessandri; Caterina Ducati; Andrea Bassi


Materials Research Society Fall Meeting & Exhibit (2017 MRS) | 2017

Synthesis and characterization of plasmonic hierarchical systems by integration of TiO2 nanostructured films with Au nanoparticles for photocatalytic applications

Matteo Ghidelli; Luca Mascaretti; Tarek Afifi Afifi; Beatrice Roberta Bricchi; Valeria Russo; C. S. Casari; Roberto Matarrese; Isabella Nova; Andrea Bassi

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F. Di Fonzo

Istituto Italiano di Tecnologia

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Javier Martí-Rujas

Istituto Italiano di Tecnologia

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P. Bruno

Argonne National Laboratory

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Annamaria Petrozza

Istituto Italiano di Tecnologia

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Fabio Di Fonzo

Istituto Italiano di Tecnologia

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Maddalena Binda

Istituto Italiano di Tecnologia

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Simone Guarnera

Istituto Italiano di Tecnologia

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