English

Resist and Transfer Free Patterned CVD Graphene Growth on ALD Molybdenum Carbide Nano Layers

Applied Physics 2020-01-01 v3 Materials Science

Abstract

Multilayer graphene (MLG) films were grown by chemical vapour deposition (CVD) on molybdenum carbide (MoCxMoC_{x}) substrates. We fabricated the catalytic MoCxMoC_{x} films by plasma enhanced atomic layer deposition (PEALD). The mechanism of graphene growth is studied and analysed for amorphous and crystalline MoCxMoC_{x} films. In addition, the unique advantages of catalytic substrate PEALD are demonstrated in two approaches to graphene device fabrication. First, we present a complete bottom up, resist-free patterned graphene growth (GG) on pre-patterned MoCxMoC_{x} PEALD performed at 50C^{\circ}C. Selective CVD GG eliminates the need to pattern or transfer the graphene film to retain its pristine, as grown, qualities. Furthermore, we fabricated MLG directly on PEALD MoCxMoC_{x} on 100 nm suspended SiN membrane. We characterise the MLG qualities using Raman spectroscopy, and analyse the samples by optical microscopy, scanning electron microscopy and X-ray diffraction measurements. The techniques of graphene device manufacturing demonstrated here pave the path for large scale production of graphene applications.

Keywords

Cite

@article{arxiv.1911.06490,
  title  = {Resist and Transfer Free Patterned CVD Graphene Growth on ALD Molybdenum Carbide Nano Layers},
  author = {Eldad Grady and Chenhui Li and Oded Raz and W. M. M. Kessels and Ageeth A. Bol},
  journal= {arXiv preprint arXiv:1911.06490},
  year   = {2020}
}

Comments

Preprint V.3, 5 pages, 6 figures. Comments: the following sections have been edited- Abstract, Introduction, Discussion and conclusions and Acknowledgements. Plots and graphics have been modified for better visualisation of data