Burson Kristen M, Yang Hyun Jin, Wall Daniel S, Marsh Thomas, Yang Zechao, Kuhness David, Brinker Matthias, Gura Leonard, Heyde Markus, Schneider Wolf-Dieter, Freund Hans-Joachim
Hamilton College, 198 College Hill Road, Clinton, New York 13323, United States.
Fritz-Haber-Institut der Max-Planck-Gesellschaft, Faradayweg 4-6, 14195 Berlin, Germany.
J Phys Chem C Nanomater Interfaces. 2022 Feb 24;126(7):3736-3742. doi: 10.1021/acs.jpcc.1c10216. Epub 2022 Feb 11.
Silica films represent a unique two-dimensional film system, exhibiting both crystalline and vitreous forms. While much scientific work has focused on the atomic-scale features of this film system, mesoscale structures can play an important role for understanding confined space reactions and other applications of silica films. Here, we report on mesoscale structures in silica films grown under ultrahigh vacuum and examined with scanning tunneling microscopy (STM). Silica films can exhibit coexisting phases of monolayer, zigzag, and bilayer structures. Both holes in the film structure and atomic-scale substrate steps are observed to influence these coexisting phases. In particular, film regions bordering holes in silica bilayer films exhibit vitreous character, even in regions where the majority film structure is crystalline. At high coverages mixed zigzag and bilayer phases are observed at step edges, while at lower coverages silica phases with lower silicon densities are observed more prevalently near step edges. The STM images reveal that silica films exhibit rich structural diversity at the mesoscale.
二氧化硅薄膜代表了一种独特的二维薄膜系统,呈现出晶体和玻璃态两种形式。尽管许多科学研究都集中在该薄膜系统的原子尺度特征上,但中尺度结构对于理解受限空间反应以及二氧化硅薄膜的其他应用可能具有重要作用。在此,我们报道了在超高真空下生长并用扫描隧道显微镜(STM)检测的二氧化硅薄膜中的中尺度结构。二氧化硅薄膜可呈现单层、锯齿形和双层结构的共存相。观察到薄膜结构中的孔洞和原子尺度的衬底台阶都会影响这些共存相。特别是,二氧化硅双层薄膜中与孔洞相邻的薄膜区域呈现出玻璃态特征,即使在大部分薄膜结构为晶体的区域也是如此。在高覆盖度下,在台阶边缘观察到混合的锯齿形和双层相,而在低覆盖度下,在台阶边缘附近更普遍地观察到硅密度较低的二氧化硅相。STM图像显示,二氧化硅薄膜在中尺度上呈现出丰富的结构多样性。