硅烯
单层
双层
硅
材料科学
半导体
带隙
离子键合
双层石墨烯
纳米技术
化学物理
石墨烯
结晶学
光电子学
化学
离子
膜
有机化学
生物化学
作者
Ritsuko Yaokawa,Tetsu Ohsuna,Tetsuya Morishita,Yuichiro Hayasaka,Michelle J. S. Spencer,Hideyuki Nakano
摘要
Silicene, a two-dimensional honeycomb network of silicon atoms like graphene, holds great potential as a key material in the next generation of electronics; however, its use in more demanding applications is prevented because of its instability under ambient conditions. Here we report three types of bilayer silicenes that form after treating calcium-intercalated monolayer silicene (CaSi2) with a BF4(-) -based ionic liquid. The bilayer silicenes that are obtained are sandwiched between planar crystals of CaF2 and/or CaSi2, with one of the bilayer silicenes being a new allotrope of silicon, containing four-, five- and six-membered sp(3) silicon rings. The number of unsaturated silicon bonds in the structure is reduced compared with monolayer silicene. Additionally, the bandgap opens to 1.08 eV and is indirect; this is in contrast to monolayer silicene which is a zero-gap semiconductor.
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