» Articles » PMID: 23157621

Thinning Segregated Graphene Layers on High Carbon Solubility Substrates of Rhodium Foils by Tuning the Quenching Process

Overview
Journal ACS Nano
Specialty Biotechnology
Date 2012 Nov 20
PMID 23157621
Citations 5
Authors
Affiliations
Soon will be listed here.
Abstract

We report the synthesis of large-scale uniform graphene films on high carbon solubility substrates of Rh foils for the first time using an ambient-pressure chemical vapor deposition method. We find that, by increasing the cooling rate in the growth process, the thickness of graphene can be tuned from multilayer to monolayer, resulting from the different segregation amount of carbon atoms from bulk to surface. The growth feature was characterized with scanning electron microscopy, Raman spectra, transmission electron microscopy, and scanning tunneling microscopy. We also find that bilayer or few-layer graphene prefers to stack deviating from the Bernal stacking geometry, with the formation of versatile moiré patterns. On the basis of these results, we put forward a segregation growth mechanism for graphene growth on Rh foils. Of particular importance, we propose that this randomly stacked few-layer graphene can be a model system for exploring some fantastic physical properties such as van Hove singularities.

Citing Articles

Advancing Molecular Sieving via Å-Scale Pore Tuning in Bottom-Up Graphene Synthesis.

Goethem C, Shen Y, Chi H, Mensi M, Zhao K, Nijmeijer A ACS Nano. 2024; .

PMID: 38324377 PMC: 10883125. DOI: 10.1021/acsnano.3c11885.


Gas Separation Membranes with Atom-Thick Nanopores: The Potential of Nanoporous Single-Layer Graphene.

Villalobos L, Babu D, Hsu K, Goethem C, Agrawal K Acc Mater Res. 2022; 3(10):1073-1087.

PMID: 36338295 PMC: 9623591. DOI: 10.1021/accountsmr.2c00143.


Controllable growth of two-dimensional materials on noble metal substrates.

Gao Y, Liu Y, Liu Z iScience. 2021; 24(12):103432.

PMID: 34917891 PMC: 8669005. DOI: 10.1016/j.isci.2021.103432.


High-mobility graphene on liquid p-block elements by ultra-low-loss CVD growth.

Wang J, Zeng M, Tan L, Dai B, Deng Y, Rummeli M Sci Rep. 2013; 3:2670.

PMID: 24036929 PMC: 3773617. DOI: 10.1038/srep02670.


Direct growth of graphene film on germanium substrate.

Wang G, Zhang M, Zhu Y, Ding G, Jiang D, Guo Q Sci Rep. 2013; 3:2465.

PMID: 23955352 PMC: 3746207. DOI: 10.1038/srep02465.