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Dive into the research topics where Giorgio Lanzani is active.

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Featured researches published by Giorgio Lanzani.


Physical Chemistry Chemical Physics | 2011

Mechanism of the initial stages of nitrogen-doped single-walled carbon nanotube growth

Toma Susi; Giorgio Lanzani; Albert G. Nasibulin; Paola Ayala; Tao Jiang; Thomas Bligaard; Kari Laasonen; Esko I. Kauppinen

We have studied the mechanism of the initial stages of nitrogen-doped single-walled carbon nanotube growth illustrated for the case of a floating catalyst chemical vapor deposition system, which uses carbon monoxide (CO) and ammonia (NH(3)) as precursors and iron as a catalyst. We performed first-principles electronic-structure calculations, fully incorporating the effects of spin polarization and magnetic moments, to investigate the bonding and chemistry of CO, NH(3), and their fragments on a model Fe(55) icosahedral cluster. A possible dissociation path for NH(3) to atomic nitrogen and hydrogen was identified, with a reaction barrier consistent with an experimentally determined value we measured by tandem infrared and mass spectrometry. Both C-C and C-N bond formation reactions were found to be barrierless and exothermic, while a parasitic reaction of HCN formation had a barrier of over 1 eV.


Molecular Simulation | 2012

Study of the stability of aluminium trimeric clusters in aqueous solutions

Giorgio Lanzani; A. Sarpola; J. Saukkoriipi; Kari Laasonen; C. A. Morrison; Ben Slater; Jaakko Rämö; S. O. Pehkonen

Ab initio molecular dynamics (AIMD) based on density functional theory has been used to study small aluminium–oxygen complexes in water. Such Al–O clusters have been seen in several recent mass spectrometry studies. In this study, we have focused on trimeric Al–O clusters. The initial very compact trimeric Al–O structures opened up and formed linear Al–O chains. The typical Al–O coordination number in these chain structures was 5. We have performed long (up to 200 ps) AIMD simulations and these chain structures are stable on the nanosecond time scale. We have also studied the reactivity of the Al–O dimer and solvated Al. We found a formation path for the trimeric cluster, which has a action barrier (0.04 eV) and a reaction free energy of − 0.55 eV. This suggests that the association of a dimer and a monomer Al–O species is fast and thermodynamically a very favourable process.


Chemistry of Materials | 2011

Nitrogen-Doped Single-Walled Carbon Nanotube Thin Films Exhibiting Anomalous Sheet Resistances

Toma Susi; Antti Kaskela; Zhen Zhu; Paola Ayala; Raul Arenal; Ying Tian; Patrik Laiho; Juha Mali; Albert G. Nasibulin; Hua Jiang; Giorgio Lanzani; Odile Stéphan; Kari Laasonen; O Thomas Pichler; Annick Loiseau; Esko I. Kauppinen


International Journal of Hydrogen Energy | 2010

NH3 adsorption and dissociation on a nanosized iron cluster

Giorgio Lanzani; Kari Laasonen


Nano Research | 2009

CO dissociation and CO+O reactions on a nanosized iron cluster

Giorgio Lanzani; Albert G. Nasibulin; Kari Laasonen; Esko I. Kauppinen


Journal of Physical Chemistry C | 2009

CO disproportionation on a nanosized iron cluster.

Giorgio Lanzani; Albert G. Nasibulin; Kari Laasonen; Esko I. Kauppinen


Journal of Alloys and Compounds | 2009

Copper passivation by metal doping

Giorgio Lanzani; Teija Kangas; Kari Laasonen


Physica Status Solidi B-basic Solid State Physics | 2010

Mechanism study of floating catalyst CVD synthesis of SWCNTs

Giorgio Lanzani; Toma Susi; Paola Ayala; Tao Jiang; Albert G. Nasibulin; Thomas Bligaard; T. Pichler; Kari Laasonen; Esko I. Kauppinen


Surface Science | 2008

SO2 and its fragments on a Cu(1 1 0) surface

Giorgio Lanzani; Kari Laasonen


Journal of Physical Chemistry B | 2016

Isomerism of Trimeric Aluminum Complexes in Aqueous Environments: Exploration via DFT-Based Metadynamics Simulation

Giorgio Lanzani; Ari P. Seitsonen; Marcella Iannuzzi; Kari Laasonen; Simo O. Pehkonen

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Albert G. Nasibulin

Skolkovo Institute of Science and Technology

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Tao Jiang

Technical University of Denmark

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