Silicene is one of the most interesting two-dimensional materials, because of not only the extraordinary properties similar to graphene, but also easy compatibility with existing silicon-based devices. However, non-existing graphitic-like structure on silicon and unstable free-standing silicene structure leads to difficulty in commercialization of this material. Therefore, substrates are essential for silicene, which affects various properties of silicene and supporting unstable structure. For maintaining outstanding properties of silicene, van der Waals bonding between silicene and substrate is essential because strong interaction, such as silicene with metal, breaks the band structure of silicene. Therefore, we review the stability of sil...
This concise book offers an essential introduction and reference guide for the many newcomers to the...
This concise book offers an essential introduction and reference guide for the many newcomers to the...
Silicene, as the silicon analog of graphene, is successfully fabricated by epitaxially growing it on...
Silicene is one of the most interesting two-dimensional materials, because of not only the extraordi...
Silicene is emerging as a two-dimensional material with very attractive electronic properties for a ...
Research on silicene shows a fast and steady growth that has increased our tool-box of novel 2D mate...
Silicene is emerging as a two-dimensional material with very attractive electronic properties for a ...
Silicene is a single atomic layer of silicon (Si) much like graphene, the first example of an elemen...
The interfaces between silicene and substrate materials play important roles in the electronic prope...
Silicene, the silicon counterpart of graphene, has been successfully grown on metallic substrates su...
Cataloged from PDF version of article.The interaction of silicene with Si, C, H, O, and Ti atoms alo...
Silicenethe silicon-based counterpart of graphenehas a two dimensional structure that is responsible...
Silicene–the silicon-based counterpart of graphene–has a two dimensional structure that is responsib...
The interaction of silicene with Si, C, H, O, and Ti atoms along with H2, H2O, and O2 molecules are ...
International audienceSince the breakthrough of graphene, considerable efforts have been made to sea...
This concise book offers an essential introduction and reference guide for the many newcomers to the...
This concise book offers an essential introduction and reference guide for the many newcomers to the...
Silicene, as the silicon analog of graphene, is successfully fabricated by epitaxially growing it on...
Silicene is one of the most interesting two-dimensional materials, because of not only the extraordi...
Silicene is emerging as a two-dimensional material with very attractive electronic properties for a ...
Research on silicene shows a fast and steady growth that has increased our tool-box of novel 2D mate...
Silicene is emerging as a two-dimensional material with very attractive electronic properties for a ...
Silicene is a single atomic layer of silicon (Si) much like graphene, the first example of an elemen...
The interfaces between silicene and substrate materials play important roles in the electronic prope...
Silicene, the silicon counterpart of graphene, has been successfully grown on metallic substrates su...
Cataloged from PDF version of article.The interaction of silicene with Si, C, H, O, and Ti atoms alo...
Silicenethe silicon-based counterpart of graphenehas a two dimensional structure that is responsible...
Silicene–the silicon-based counterpart of graphene–has a two dimensional structure that is responsib...
The interaction of silicene with Si, C, H, O, and Ti atoms along with H2, H2O, and O2 molecules are ...
International audienceSince the breakthrough of graphene, considerable efforts have been made to sea...
This concise book offers an essential introduction and reference guide for the many newcomers to the...
This concise book offers an essential introduction and reference guide for the many newcomers to the...
Silicene, as the silicon analog of graphene, is successfully fabricated by epitaxially growing it on...