Andreas Ruediger
Full professor (since 2016)
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About
Andreas Ruediger is a Full Professor at the Institut national de la recherche scientifique in Canada. His research primarily focuses on advanced materials science, particularly in the areas of ferroelectric materials, terahertz spectroscopy, and the characterization of semiconductor interfaces. He has published recent articles exploring phase transitions in ceramics, dielectric behavior, and surface interactions using innovative spectroscopic techniques.
Articles (14)
Unraveling the Heterointegration of 3D Semiconductors on Graphene by Anchor Point Nucleation
The heterointegration of graphene with semiconductor materials and the development of graphene‐based hybrid functional devices are heavily bound to the control of surface energy. Although remote epitaxy offers one of the most appealing techniques for implementing 3D/2D heterostructures, it is only suitable for polar materials and is hugely dependent on the graphene interface quality. Here, the growth of defect‐free single‐crystalline germanium (Ge) layers on a graphene‐coated Ge substrate is demonstrated by introducing a new approach named anchor point nucleation (APN). This powerful approach based on graphene surface engineering enables the growth of semiconductors on any type of substrate covered by graphene. Through plasma treatment, defects such as dangling bonds and nanoholes, which act as preferential nucleation sites, are introduced in the graphene layer. These experimental data unravel the nature of those defects, their role in nucleation, and the mechanisms governing this technique. Additionally, high‐resolution transmission microscopy combined with geometrical phase analysis established that the as‐grown layers are perfectly single‐crystalline, stress‐free, and oriented by the substrate underneath the engineered graphene layer. These findings provide new insights into graphene engineering by plasma and open up a universal pathway for the heterointegration of high‐quality 3D semiconductors on graphene for disruptive hybrid devices.
Year:
2023
Collaborators (9)
Serge Ecoffey
Prof.
Université de Sherbrooke
Dominique Drouin
-
Emanuele Orgiu
Full Professor
Institut national de la recherche scientifique
Fabien Alibart
Institut d'Électronique de Microélectronique et de Nanotechnologie
Cyril Muehlethaler
Professeur
Université du Québec à Trois-Rivières
Abderraouf Boucherif
-
Christina Schindler
Professor
Munich University of Applied Sciences
Denis Machon
CNRS
Gilles Patriarche
-

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