Inspired by recent studies of various two-dimensional (2D) metals such as Au, Fe and Ag, we study the growth of two-dimensional gold patches in graphene pores by density-functional theory. We find that at room temperature gold atoms diffuse readily on top of both graphene and two-dimensional gold with energy barriers less than 0.5 eV. Furthermore, gold atoms move without barriers from the top of graphene to its edge and from the top of 2D gold to its edge. The energy barriers are absent even at the interface of 2D gold and graphene, so that the gold atoms move effortlessly across the interface. We hope our demonstration for the propensity of diffusing gold atoms to grow 2D gold patches in graphene pores will inspire the fabrication of these...
There is ongoing research in freestanding single-atom thick elemental metal patches, including those...
Preparation of single-atom-thick layers of ordinary metals has been a challenging task since their c...
Preparation of single-atom-thick layers of ordinary metals has been a challenging task since their c...
Grafeenin löytämisen myötä kaksiulotteisten (2D) materiaalien tutkimus on edennyt huomattavasti viim...
Bulk gold's attributes of relative chemical inertness, rarity, relatively low melting point and its ...
Bulk gold's attributes of relative chemical inertness, rarity, relatively low melting point and its ...
Bulk gold's attributes of relative chemical inertness, rarity, relatively low melting point and its ...
Bulk gold's attributes of relative chemical inertness, rarity, relatively low melting point and its ...
We report density functional theory (DFT) calculations for gold atoms and dimers on the surface of g...
Bulk gold's attributes of relative chemical inertness, rarity, relatively low melting point and its ...
Fabrication of high-performance heterostructure devices requires fundamental understanding of the di...
Bulk gold's attributes of relative chemical inertness, rarity, relatively low melting point and its ...
There is ongoing research in freestanding single-atom thick elemental metal patches, including those...
There is ongoing research in freestanding single-atom thick elemental metal patches, including those...
We study the diffusion dynamics, the diffusion mechanisms, and the adsorption energetics of Ag, Au, ...
There is ongoing research in freestanding single-atom thick elemental metal patches, including those...
Preparation of single-atom-thick layers of ordinary metals has been a challenging task since their c...
Preparation of single-atom-thick layers of ordinary metals has been a challenging task since their c...
Grafeenin löytämisen myötä kaksiulotteisten (2D) materiaalien tutkimus on edennyt huomattavasti viim...
Bulk gold's attributes of relative chemical inertness, rarity, relatively low melting point and its ...
Bulk gold's attributes of relative chemical inertness, rarity, relatively low melting point and its ...
Bulk gold's attributes of relative chemical inertness, rarity, relatively low melting point and its ...
Bulk gold's attributes of relative chemical inertness, rarity, relatively low melting point and its ...
We report density functional theory (DFT) calculations for gold atoms and dimers on the surface of g...
Bulk gold's attributes of relative chemical inertness, rarity, relatively low melting point and its ...
Fabrication of high-performance heterostructure devices requires fundamental understanding of the di...
Bulk gold's attributes of relative chemical inertness, rarity, relatively low melting point and its ...
There is ongoing research in freestanding single-atom thick elemental metal patches, including those...
There is ongoing research in freestanding single-atom thick elemental metal patches, including those...
We study the diffusion dynamics, the diffusion mechanisms, and the adsorption energetics of Ag, Au, ...
There is ongoing research in freestanding single-atom thick elemental metal patches, including those...
Preparation of single-atom-thick layers of ordinary metals has been a challenging task since their c...
Preparation of single-atom-thick layers of ordinary metals has been a challenging task since their c...