The interface between a two-dimensional (2D) atomic crystal and a metal surface can be regarded as a nanoreactor, in which molecule adsorption and catalytic reactions may occur. In this work, we demonstrate that oxygen intercalation and desorption occur at the interface between hexagonal boron nitride (h-BN) overlayer and Pt(111) surface by using near-ambient pressure X-ray photoelectron spectroscopy (NAP-XPS), photoemission electron microscopy, and low-energy electron microscopy. Furthermore, CO oxidation under the h-BN cover was also observed by NAP-XPS. The present results indicate that the nanospace under the 2D cover can be used for surface reactions, in which novel surface chemistry may be induced by the nanoconfinement effect
We demonstrate the reversible intercalation of CO between a hexagonal boron nitride (h-BN) monolayer...
We investigate the interfacial chemistry between Fe catalyst foils and monolayer hexagonal boron nit...
The atomic and electronic structure of the lattice-mismatched h-BN/Pt(111) and h-BN/Rh(111) interfa...
In heterogeneous catalysis molecule-metal interaction is often modulated through structural modifica...
In heterogeneous catalysis molecule–metal interaction is often modulated through structural modifica...
Interaction of hexagonal boron nitride (h-BN) with gases is of great importance for its properties a...
We study the effect of thermal oxygen exposure on a monolayer of h-BN grown on vicinal Ni surfaces b...
We study the effect of thermal oxygen exposure on a monolayer of h-BN grown on vicinal Ni surfaces b...
We investigate the interfacial chemistry between Fe catalyst foils and monolayer hexagonal boron nit...
Fundamental understanding of chemistry confined to nanospace remains a challenge since molecules enc...
One of the fundamental applications for monolayer-thick 2D materials is their use as protective laye...
The effect of atomic oxygen adsorption on the structure and electronic properties of monolayer hexag...
We investigate the interfacial chemistry between Fe catalyst foils and monolayer hexagonal boron nit...
We present detailed studies on the covalent adsorption of molecular oxygen and atomic hydrogen on th...
The formation of hexagonal boron nitride (h-BN) monolayers on Ni(111), Rh(111), and Pt(111) has been...
We demonstrate the reversible intercalation of CO between a hexagonal boron nitride (h-BN) monolayer...
We investigate the interfacial chemistry between Fe catalyst foils and monolayer hexagonal boron nit...
The atomic and electronic structure of the lattice-mismatched h-BN/Pt(111) and h-BN/Rh(111) interfa...
In heterogeneous catalysis molecule-metal interaction is often modulated through structural modifica...
In heterogeneous catalysis molecule–metal interaction is often modulated through structural modifica...
Interaction of hexagonal boron nitride (h-BN) with gases is of great importance for its properties a...
We study the effect of thermal oxygen exposure on a monolayer of h-BN grown on vicinal Ni surfaces b...
We study the effect of thermal oxygen exposure on a monolayer of h-BN grown on vicinal Ni surfaces b...
We investigate the interfacial chemistry between Fe catalyst foils and monolayer hexagonal boron nit...
Fundamental understanding of chemistry confined to nanospace remains a challenge since molecules enc...
One of the fundamental applications for monolayer-thick 2D materials is their use as protective laye...
The effect of atomic oxygen adsorption on the structure and electronic properties of monolayer hexag...
We investigate the interfacial chemistry between Fe catalyst foils and monolayer hexagonal boron nit...
We present detailed studies on the covalent adsorption of molecular oxygen and atomic hydrogen on th...
The formation of hexagonal boron nitride (h-BN) monolayers on Ni(111), Rh(111), and Pt(111) has been...
We demonstrate the reversible intercalation of CO between a hexagonal boron nitride (h-BN) monolayer...
We investigate the interfacial chemistry between Fe catalyst foils and monolayer hexagonal boron nit...
The atomic and electronic structure of the lattice-mismatched h-BN/Pt(111) and h-BN/Rh(111) interfa...