Projects per year
Abstract
The growth of two-dimensional boron nitride (2D-BN) thin films on Ge (001) has been studied, with the ultimate goal of integrating this material into Si technology. Molecular beam epitaxy was used in a dedicated ultra-high vacuum chamber. To avoid the formation of thermal pits on heating the Ge film above ∼750 °C, a two-step procedure was optimized. A thin 2D-BN buffer layer is first grown at ∼730 °C using two independent cells for B and N, aimed at stabilizing the Ge surface and to prevent thermal pits formation upon further heating. The second-step at 800 °C makes use of another precursor, gaseous borazine, in the same chamber. The growth proceeds in a step-flow mode, and results in homogeneous nano-crystalline large-surface 2D-BN films with a ∼1 nm roughness.
| Original language | English |
|---|---|
| Article number | 163165 |
| Journal | Applied Surface Science |
| Volume | 699 |
| DOIs | |
| Publication status | Published - 1 Aug 2025 |
Keywords
- 2D boron nitride
- Borazine
- Molecular beam epitaxy
- Photoelectron spectroscopy
- Step-flow growth
- Surface roughness
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Dive into the research topics of 'Optimized two-step growth of large surface two-dimensional boron nitride on Ge (001) films by molecular beam epitaxy'. Together they form a unique fingerprint.Projects
- 1 Finished
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2DHetero: hBN/Graphene 2D Heterostructures: from scalable growth to integration
Lukosius, M. (Supervisor), Colomer, J.-F. (PI), Henrard, L. (CoI) & Vignaud, D. (CoI)
1/01/20 → 31/12/22
Project: Research
Equipment
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Electron Microscopy
Colomer, J.-F. (Manager) & Charlier, C. (Operator)
Technological Platform Morphology - ImagingFacility/equipment: Equipment
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Synthesis, Irradiation and Analysis of Materials (SIAM)
Louette, P. (Manager), Colaux, J. (Manager), Felten, A. (Manager), Tabarrant, T. (Operator), COME, F. (Operator) & Debarsy, P.-L. (Manager)
Technological Platform Synthesis, Irradiation and Analysis of MaterialsFacility/equipment: Technological Platform
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