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Surface chemistry and catalysis confined under two-dimensional materials
Q Fu, X Bao - Chemical Society Reviews, 2017 - pubs.rsc.org
Two-dimensional (2D) materials are characterised by their strong intraplanar bonding but
weak interplanar interaction. Interfaces between neighboring 2D layers or between 2D …
weak interplanar interaction. Interfaces between neighboring 2D layers or between 2D …
Graphene: an emerging electronic material
Graphene, a single layer of carbon atoms in a honeycomb lattice, offers a number of
fundamentally superior qualities that make it a promising material for a wide range of …
fundamentally superior qualities that make it a promising material for a wide range of …
Metal-graphene interfaces in epitaxial and bulk systems: A review
The prosperity of graphene in the past decade has provided us with both a versatile platform
for scientific studies and a multitude of solutions for technological applications. Interfacing …
for scientific studies and a multitude of solutions for technological applications. Interfacing …
Epitaxial growth and physical properties of 2D materials beyond graphene: from monatomic materials to binary compounds
The discovery of graphene opened a door for manufacturing and investigating two-
dimensional (2D) materials. After more than ten years of development, 2D materials have …
dimensional (2D) materials. After more than ten years of development, 2D materials have …
Oxygen switching of the epitaxial graphene–metal interaction
Using photoemission spectroscopy techniques, we show that oxygen intercalation is
achieved on an extended layer of epitaxial graphene on Ir (111), which results in the “lifting” …
achieved on an extended layer of epitaxial graphene on Ir (111), which results in the “lifting” …
Stable silicene in graphene/silicene Van der Waals heterostructures
Silicene‐based van der Waals heterostructures are theoretically predicted to have
interesting physical properties, but their experimental fabrication has remained a challenge …
interesting physical properties, but their experimental fabrication has remained a challenge …
Oxygen intercalation under graphene on Ir (111): energetics, kinetics, and the role of graphene edges
Using X-ray photoemission spectroscopy (XPS) and scanning tunneling microscopy (STM)
we resolve the temperature-, time-, and flake size-dependent intercalation phases of oxygen …
we resolve the temperature-, time-, and flake size-dependent intercalation phases of oxygen …
Two-dimensional ultrathin silica films
Two-dimensional (2D) ultrathin silica films have the potential to reach technological
importance in electronics and catalysis. Several well-defined 2D-silica structures have been …
importance in electronics and catalysis. Several well-defined 2D-silica structures have been …
Revealing the electronic structure of silicon intercalated armchair graphene nanoribbons by scanning tunneling spectroscopy
The electronic properties of graphene nanoribbons grown on metal substrates are
significantly masked by the ones of the supporting metal surface. Here, we introduce a novel …
significantly masked by the ones of the supporting metal surface. Here, we introduce a novel …
[HTML][HTML] TOF-SIMS analysis of decoherence sources in superconducting qubits
Superconducting qubits have emerged as a potentially foundational platform technology for
addressing complex computational problems deemed intractable with classical computing …
addressing complex computational problems deemed intractable with classical computing …