National Research Centre "Kurchatov Institute", Kurchatov Sq. 1, Moscow, 123182, Russia.
Nanoscale. 2016 Sep 28;8(36):16229-35. doi: 10.1039/c6nr04573a. Epub 2016 Jul 29.
Silicene, a 2D honeycomb lattice of Si atoms similar to graphene, is expected to be a platform for nanoelectronics and home to novel quantum phenomena. Unlike graphene, free-standing silicene is notoriously difficult to stabilize, while strong hybridization of silicene with substrates destroys its desirable properties. On the other hand, Dirac cones of silicene are effectively realized in a bulk - stoichiometric ionic multilayer silicene intercalation compound CaSi2. Besides, a number of new 2D silicene-based materials are synthesized employing CaSi2 as a precursor. However, the rather complex atomic structure of CaSi2 and fresh opportunities of physical and chemical breakthroughs drive the search for alternative compounds with silicene networks. Here, a new polymorph of SrSi2 is synthesized, enjoying both the structure of intercalated multilayer silicene and the simplest possible stacking of silicene sheets. The MBE-quality synthesis accomplished on Si(001) and Si(111) surfaces leads to epitaxial films of SrSi2 with orientation controlled by the substrate, as revealed by XRD, RHEED and electron microscopy studies. The structural SrSi2/Si relation is mirrored in the transport properties of the films.
硅烯,一种类似于石墨烯的二维硅原子蜂窝晶格,有望成为纳米电子学的平台,并承载新的量子现象。与石墨烯不同,独立的硅烯很难稳定,而硅烯与衬底的强烈杂化会破坏其理想的性质。另一方面,在块状 - 化学计量的离子多层硅烯插层化合物 CaSi2 中,硅烯的狄拉克锥被有效地实现。此外,许多新的基于硅烯的二维材料是通过采用 CaSi2 作为前体来合成的。然而,CaSi2 相当复杂的原子结构以及物理和化学突破的新机会推动了对具有硅烯网络的替代化合物的寻找。在这里,合成了一种新的 SrSi2 多晶型物,它既具有插层多层硅烯的结构,又具有最简单的硅烯片层堆积方式。在 Si(001)和 Si(111)表面上完成的 MBE 质量合成导致 SrSi2 的外延薄膜具有由衬底控制的取向,这一点通过 XRD、RHEED 和电子显微镜研究得到了揭示。薄膜的结构 SrSi2/Si 关系反映了其输运性质。