Alexandre Favron
Université de Montréal
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Featured researches published by Alexandre Favron.
Nature Materials | 2015
Alexandre Favron; Etienne Gaufrès; F. Fossard; Anne-Laurence Phaneuf-L’Heureux; Nathalie Y-W. Tang; Pierre L. Levesque; Annick Loiseau; Richard Leonelli; S. Francoeur; Richard Martel
Thin layers of black phosphorus have recently raised interest owing to their two-dimensional (2D) semiconducting properties, such as tunable direct bandgap and high carrier mobilities. This lamellar crystal of phosphorus atoms can be exfoliated down to monolayer 2D-phosphane (also called phosphorene) using procedures similar to those used for graphene. Probing the properties has, however, been challenged by a fast degradation of the thinnest layers on exposure to ambient conditions. Herein, we investigate this chemistry using in situ Raman and transmission electron spectroscopies. The results highlight a thickness-dependent photoassisted oxidation reaction with oxygen dissolved in adsorbed water. The oxidation kinetics is consistent with a phenomenological model involving electron transfer and quantum confinement as key parameters. A procedure carried out in a glove box is used to prepare mono-, bi- and multilayer 2D-phosphane in their pristine states for further studies on the effect of layer thickness on the Raman modes. Controlled experiments in ambient conditions are shown to lower the A(g)(1)/A(g)(2) intensity ratio for ultrathin layers, a signature of oxidation.
Nature Communications | 2015
V. Tayari; N. Hemsworth; I. Fakih; Alexandre Favron; Etienne Gaufrès; G. Gervais; Richard Martel; Thomas Szkopek
Black phosphorus (bP) is the second known elemental allotrope with a layered crystal structure that can be mechanically exfoliated to atomic layer thickness. Unlike metallic graphite and semi-metallic graphene, bP is a semiconductor in both bulk and few-layer form. Here we fabricate bP-naked quantum wells in a back-gated field effect transistor geometry with bP thicknesses ranging from 6±1 nm to 47±1 nm. Using a polymer encapsulant, we suppress bP oxidation and observe field effect mobilities up to 900 cm2 V−1 s−1 and on/off current ratios exceeding 105. Shubnikov-de Haas oscillations observed in magnetic fields up to 35 T reveal a 2D hole gas with Schrödinger fermion character in a surface accumulation layer. Our work demonstrates that 2D electronic structure and 2D atomic structure are independent. 2D carrier confinement can be achieved without approaching atomic layer thickness, advantageous for materials that become increasingly reactive in the few-layer limit such as bP.
16th European Microscopy Congress | 2015
Etienne Gaufrès; Alexandre Favron; F. Fossard; Pierre L. Levesque; Anne-Laurence Phaneuf-L'Heureux; S. Francoeur; Richard Martel; Annick Loiseau
HAL is a multi-disciplinary open access archive for the deposit and dissemination of scientific research documents, whether they are published or not. The documents may come from teaching and research institutions in France or abroad, or from public or private research centers. L’archive ouverte pluridisciplinaire HAL, est destinée au dépôt et à la diffusion de documents scientifiques de niveau recherche, publiés ou non, émanant des établissements d’enseignement et de recherche français ou étrangers, des laboratoires publics ou privés. Spectroscopy on Black Phosphorus exfoliated down to the monolayer Etienne Gaufrès, Alexandre Favron, Frédéric Fossard, Pierre Lévesque, Anne-Laurence Phaneuf-L’Heureux, Sébastien Francoeur, Richard Martel, Annick Loiseau
arXiv: Mesoscale and Nanoscale Physics | 2014
Alexandre Favron; Etienne Gaufrès; F. Fossard; Pierre L. Levesque; A-L. Phaneuf-L'Heureux; N. Y-W. Tang; A. Loiseau; Richard Leonelli; S. Francoeur; Richard Martel
Nano Letters | 2016
Anne-Laurence Phaneuf-L’Heureux; Alexandre Favron; Jean-Francis Germain; Patrick Lavoie; P. Desjardins; Richard Leonelli; Richard Martel; S. Francoeur
Archive | 2014
Alexandre Favron; Etienne Gaufrès; F. Fossard; Pierre L. Levesque; A-L. Phaneuf-L'Heureux; N. Y-W. Tang; A. Loiseau; Richard Leonelli; S. Francoeur; Richard Martel
ACS Nano | 2016
Etienne Gaufrès; Nathalie Y-Wa Tang; Alexandre Favron; Charlotte Allard; François Lapointe; Vincent Jourdain; Saïd Tahir; Colin-Nadeau Brosseau; Richard Leonelli; Richard Martel
Journal of Raman Spectroscopy | 2018
Etienne Gaufrès; Stéphane Marcet; Vincent Aymong; Nathalie Y-Wa Tang; Alexandre Favron; Félix Thouin; Charlotte Allard; David Rioux; Nicolas Cottenye; Marc Verhaegen; Richard Martel
Nano Letters | 2018
Alexandre Favron; Félix Antoine Goudreault; Vincent Gosselin; Julien Groulx; Michel Côté; Richard Leonelli; Jean-Francis Germain; Anne-Laurence Phaneuf-L’Heureux; S. Francoeur; Richard Martel
Bulletin of the American Physical Society | 2018
Félix Antoine Goudreault; Alexandre Favron; Vincent Gosselin; Julien Groulx; Michel Côté; Richard Martel; Richard Leonelli