Oxidising and carburising catalyst conditioning for the controlled growth and transfer of large crystal monolayer hexagonal boron nitride
arXiv:2011.13176 · doi:10.1088/2053-1583/ab6269
Abstract
Hexagonal boron nitride (h-BN) is well-established as a requisite support, encapsulant and barrier for 2D material technologies, but also recently as an active material for applications ranging from hyperbolic metasurfaces to room temperature single-photon sources. Cost-effective, scalable and high quality growth techniques for h-BN layers are critically required. We utilise widely-available iron foils for the catalytic chemical vapour deposition (CVD) of h BN and report on the significant role of bulk dissolved species in h-BN CVD, and specifically, the balance between dissolved oxygen and carbon. A simple pre-growth conditioning step of the iron foils enables us to tailor an error-tolerant scalable CVD process to give exceptionally large h-BN monolayer domains. We also develop a facile method for the improved transfer of as-grown h-BN away from the iron surface by means of the controlled humidity oxidation and subsequent rapid etching of a thin interfacial iron oxide; thus, avoiding the impurities from the bulk of the foil. We demonstrate wafer-scale (2 inch) production and utilise this h-BN as a protective layer for graphene towards integrated (opto) electronic device fabrication.
References in corpus (8)
- The Raman Fingerprint of Graphene
- Light-emitting diodes by bandstructure engineering in van der Waals heterostructures
- Sub-diffractional, volume-confined polaritons in a natural hyperbolic material: hexagonal boron nitride
- Strong Oxidation Resistance of Atomically Thin Boron Nitride Nanosheets
- Infrared hyperbolic metasurface based on nanostructured van der Waals materials
- Synthesis of large single-crystal hexagonal boron nitride grains on Cu-Ni alloy
- Annealing Free, Clean Graphene Transfer using Alternative Polymer Scaffolds
- Wide-field spectral super-resolution mapping of optically active defects in hBN