4.8 Article

Graphene on nickel (100) micrograins: Modulating the interface interaction by extended moire superstructures

期刊

CARBON
卷 130, 期 -, 页码 441-447

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.carbon.2018.01.010

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资金

  1. Italian Ministry of Foreign Affairs, Directorate General for the Country Promotion (Executive Programme with Argentina) [PGR00190]
  2. University of Trieste (program Finanziamento di Ateneo per progetti di ricerca scientifica - FRA)
  3. Italian Ministry of Education, University and Reasearch through Progetto Strategico NFFA
  4. CONICET
  5. FONCyT [PICT-2015-2191]
  6. SeCyT-UNC (Argentina)
  7. ICTP TRIL Programme, Trieste, Italy

向作者/读者索取更多资源

Interaction with the substrate strongly affects the electronic/chemical properties of supported graphene. So far, graphene grown by chemical vapor deposition (CVD) on catalytic single crystal transition metal surfaces - mostly 3-fold close-packed - has mainly been studied. Herein, we investigated CVD graphene on a polycrystalline nickel (Ni) substrate, focusing in particular on (100) micrograins and comparing the observed behavior with that on single crystal Ni(100) substrate. The symmetry-mismatch leads to moire superstructures with stripe-like or rhombic-network morphology, which were characterized by atomically-resolved scanning tunneling microscopy (STM). Density functional theory (DFT) simulations shed light on spatial corrugation and interfacial interactions: depending on the misorientation angle, graphene is either alternately physi- and chemisorbed or uniformly chemisorbed, the interaction being modulated by the (sub)nanometer-sized moire superstructures. Ni(100) micrograins appear to be a promising substrate to finely tailor the electronic properties of graphene at the nanoscale, with relevant perspective applications in electronics and catalysis. (c) 2018 Elsevier Ltd. All rights reserved.

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