Search Results - "Mattei, Jean Gabriel"
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Examining Different Regimes of Ionization‐Induced Damage in GaN Through Atomistic Simulations
Published in Small (Weinheim an der Bergstrasse, Germany) (01-12-2022)“…The widespread adoption of gGaN in radiation‐hard semiconductor devices relies on a comprehensive understanding of its response to strongly ionizing radiation…”
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Gas-Phase Synthesis of Trimetallic Nanoparticles
Published in Chemistry of materials (26-03-2019)“…To this day, engineering nanoalloys beyond bimetallic compositions has scarcely been within the scope of physical deposition methods due to the complex,…”
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Unravelling the secrets of the resistance of GaN to strongly ionising radiation
Published in Communications physics (12-03-2021)“…GaN is the most promising upgrade to the traditional Si-based radiation-hard technologies. However, the underlying mechanisms driving its resistance are…”
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On the Use of Amine-Borane Complexes To Synthesize Iron Nanoparticles
Published in Chemistry : a European journal (03-05-2013)“…The effectiveness of amine–borane as reducing agent for the synthesis of iron nanoparticles has been investigated. Large (2–4 nm) Fe nanoparticles were…”
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Investigation into Cu diffusion at the Cu/SiO2 hybrid bonding interface of 3D stacked integrated circuits
Published in Microelectronics and reliability (01-04-2023)“…Reliability concerns are often risen for the hybrid bonding integration due to a potential misalignment in the bonding step leading that Cu directly faces…”
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Structural and mechanical modifications of GaN thin films by swift heavy ion irradiation
Published in Vacuum (01-01-2022)“…The structural modifications and the evolution of mechanical behavior of gallium nitride (GaN) thin films irradiated by 92 MeV 129Xe23+ at different fluences…”
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Examining Different Regimes of Ionization‐Induced Damage in GaN Through Atomistic Simulations (Small 49/2022)
Published in Small (Weinheim an der Bergstrasse, Germany) (01-12-2022)“…Radiation‐Hard Semiconductors GaN is a promising radiation‐hard semiconductor. In article number 2102235, Miguel C. Sequeira and co‐workers clarify its…”
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Advanced EELS spectroscopy characterization of AlGaN/GaN materials
Published in BIO web of conferences (01-01-2024)Get full text
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Novel ferrocene-anchored ZnO nanoparticle/carbon nanotube assembly for glucose oxidase wiring: application to a glucose/air fuel cell
Published in Nanoscale (28-06-2015)“…Glucose oxidase (GOx) is immobilized on ZnO nanoparticle-modified electrodes. The immobilized glucose oxidase shows efficient mediated electron transfer with…”
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Surface Segregation of Pd from TiO2-Supported AuPd Nanoalloys under CO Oxidation Conditions Observed In situ by ETEM and DRIFTS
Published in ChemCatChem (01-09-2013)“…A TiO2‐supported AuPd bimetallic catalyst with an Au/Pd atomic ratio of 8 was prepared by deposition‐precipitation with urea, and its activity in CO oxidation…”
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Reliability of the hybrid bonding level using submicrometric bonding pads
Published in Microelectronics and reliability (01-11-2023)Get full text
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Surface Segregation of Pd from TiO2-Supported AuPd Nanoalloys under CO Oxidation Conditions Observed Insitu by ETEM and DRIFTS
Published in ChemCatChem (01-09-2013)“…A TiO2-supported AuPd bimetallic catalyst with an Au/Pd atomic ratio of 8 was prepared by deposition-precipitation with urea, and its activity in CO oxidation…”
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Fullerene irradiation leading to track formation enclosing nitrogen bubbles in GaN material
Published in Materialia (2021)“…Gallium nitride was irradiated with fullerene projectiles having an electronic stopping power above the threshold required to promote ion track formation. The…”
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Surface Segregation of Pd from TiO 2 ‐Supported AuPd Nanoalloys under CO Oxidation Conditions Observed In situ by ETEM and DRIFTS
Published in ChemCatChem (01-09-2013)“…A TiO 2 ‐supported AuPd bimetallic catalyst with an Au/Pd atomic ratio of 8 was prepared by deposition‐precipitation with urea, and its activity in CO…”
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Design of FeBi nanoparticles for imaging applications
Published in Faraday discussions (01-01-2014)“…A variety of imaging technologies are now routinely used in the medical field, their use being continuously enlarged through the development of contrast…”
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