Description
English version below
đŻ Vous ĂȘtes passionné·e par les matĂ©riaux 2D, les couches minces et la R&D de pointe ?
LâUniversitĂ© de Sherbrooke, en partenariat avec Teledyne DALSA Bromont DALSA et le C2MI, ouvre un stage #postdoctoral exceptionnel au cĆur des #technologies MEMS de prochaine gĂ©nĂ©ration.
đŹ đ Description du projet:
Dans un contexte oĂč les MEMS exigent des matĂ©riaux toujours plus performants, Teledyne DALSA et lâUdeS sâassocient pour dĂ©velopper une nouvelle classe de matĂ©riaux bidimensionnels, reconnus pour leur potentiel remarquable en microâsystĂšmes Ă©lectromĂ©caniques.
đ Votre mission :
đ DĂ©velopper un procĂ©dĂ© de croissance innovant (CVD et/ou pulvĂ©risation cathodique) pour synthĂ©tiser des films ultraâminces de.
đ TransfĂ©rer ces couches sur des substrats adaptĂ©s.
đ CaractĂ©riser leurs propriĂ©tĂ©s Ă©lectriques, mĂ©caniques, thermiques et structurales, notamment via :
âïž TEM
âïž transport Ă©lectronique
âïž tests mĂ©caniques
âïž IR, etc.
đ Mettre en place les Ă©quipements nĂ©cessaires, optimiser les procĂ©dĂ©s et dĂ©montrer la croissance Ă lâĂ©chelle wafer pour des applications MEMS industrielles.
Ce projet reprĂ©sente une occasion rare de travailler Ă lâinterface matĂ©riaux 2D Ă microfabrication Ă caractĂ©risation avancĂ©e.
Pour plus de dĂ©tails : SynthĂšse et caractĂ©risation de nouveaux matĂ©riaux 2D pour des applications MEMs – Recherche – UniversitĂ© de Sherbrooke
đ§Ș Environnement de recherche:
Vous évoluerez dans un écosystÚme unique composé de trois acteurs majeurs :
đą Institut interdisciplinaire d’innovation technologique – 3IT â Institut spĂ©cialisĂ© en R&D appliquĂ©e (Ă©nergie, environnement, santĂ©)
đ C2MI â Centre international dâinnovation en encapsulation avancĂ©e & MEMS
đ Teledyne DALSA Bromont â Lâune des plus grandes fonderies MEMS « pureâplay » au monde, avec 3800 mÂČ de salles blanches et plus de 30 ans dâexpertise.
Le tout sous la supervision conjointe des Prs Nadi Braidy, Mathieu Massicotte et Luc G. Fréchette Fréchette, experts reconnus en nanomatériaux, #matériaux 2D et #MEMS.
đĄ Un environnement de formation exceptionnel, rĂ©unissant industrie et acadĂ©mie, pour concevoir les technologies du futur.
đ€ Profil recherchĂ©
Vous ĂȘtes titulaire dâun doctorat en phys., chimie, gĂ©nie ou science des matĂ©riaux, et possĂ©dez :
â ExpĂ©rience en dĂ©pĂŽt/croissance de couches minces
â TrĂšs bonne maĂźtrise de la cristallographie
â CompĂ©tence solide en microscopie Ă©lectronique en transmission (TEM)
Atouts appréciés :
â ExpĂ©rience en CVD et/ou pulvĂ©risation cathodique
â Travail en salle blanche
â Connaissance des matĂ©riaux 2D
â Autonomie, rigueur, esprit dâĂ©quipe et passion pour la recherche appliquĂ©e
đ© Pour postuler
Envoyez :
âïž CV
âïž Lettre de motivation
âïž 2 rĂ©fĂ©rences
đ§ emplois-materiaux@usherbrooke.ca
———————————————–
đŻ Are you passionate about 2D materials, thinâfilm growth, and cuttingâedge R&D?
The UniversitĂ© de Sherbrooke, in partnership with Teledyne DALSA Bromont and the C2MI, is opening an exceptional postdoctoral position at the heart of nextâgeneration #MEMS technologies.
đŹ đ Project Description:
To push the performance limits of MEMS devices, Teledyne DALSA and the UniversitĂ© de Sherbrooke are collaborating to develop a new class of twoâdimensional materials, known for their high potential in advanced microâelectromechanical systems.
For more details : Synthesis and characterization of new 2D materials for MEMs applications CIRCUITS FOR AI-DRIVEN SPIN QUBIT CONTROL – Research – UniversitĂ© de Sherbrooke
đ Your role will include:
Developing an innovative growth process (CVD and/or sputtering) to synthesize ultraâthin 2D films.
Transferring these films onto appropriate substrates.
Characterizing their electrical, mechanical, thermal, and structural properties, using techniques such as:
Transmission electron microscopy (TEM)
Electronic transport measurements
Mechanical testing
Infrared spectroscopy, etc.
Setting up the synthesis systems, optimizing the growth and transfer processes, and ultimately demonstrating waferâscale deposition for industrial MEMS applications.
This project offers a unique opportunity to work at the interface of 2D materials Ă microfabrication Ă advanced characterization.
đ§Ș Research Environment:
You will evolve within a worldâclass applied research ecosystem that includes:
đą Institut interdisciplinaire d’innovation technologique – 3IT (UdeS) â A Canadian leader in applied R&D (energy, environment, health)
đ C2MI â An international innovation hub for MEMS and advanced semiconductor packaging
đ Teledyne DALSA Bromont â One of the largest MEMS pureâplay foundries worldwide, operating 3,800 mÂČ of cleanroom facilities for over 30 years
Your work will be supervised by Professors Nadi Braidy, Mathieu Massicotte, and Luc G. Fréchette Fréchette, leading experts in nanomaterials, 2D materials, and MEMS engineering.
đĄ A synergistic academicâindustrial environment designed to develop the technologies of tomorrow.
đ€ Candidate Profile
The ideal candidate holds a Ph.D. in physics, chemistry, engineering, or materials science, with:
â Experience in thinâfilm deposition or growth
â Strong background in crystallography
â Significant expertise in transmission electron microscopy (TEM)
Assets:
â Experience with CVD growth or sputtering
â Cleanroom experience
â Familiarity with 2D materials
â Strong adaptability, autonomy, teamwork, and problemâsolving abilities
â Genuine interest in materials synthesis, 2D materials, and interdisciplinary R&D
đ© How to Apply
Please submit:
CV
Cover letter
2 references
đ§ emplois-materiaux@usherbrooke.ca





