Physics/Department of Natural Sciences, Åbo Akademi , Turku FI-20500, Finland.
Department of Applied Physics, Aalto University School of Science , P.O. Box 11100, Aalto 00076, Finland.
ACS Nano. 2016 Dec 27;10(12):10929-10935. doi: 10.1021/acsnano.6b05577. Epub 2016 Nov 14.
Kagome lattices are structures possessing fascinating magnetic and vibrational properties, but in spite of a large body of theoretical work, experimental realizations and investigations of their dynamics are scarce. Using a combination of Raman spectroscopy and density functional theory calculations, we study the vibrational properties of two-dimensional silica (2D-SiO), which has a kagome lattice structure. We identify the signatures of crystalline and amorphous 2D-SiO structures in Raman spectra and show that, at finite temperatures, the stability of 2D-SiO lattice is strongly influenced by phonon-phonon interaction. Our results not only provide insights into the vibrational properties of 2D-SiO and kagome lattices in general but also suggest a quick nondestructive method to detect 2D-SiO.
kagome 晶格具有迷人的磁学和振动性质,但尽管有大量的理论工作,实验实现和动力学研究仍然很少。我们使用拉曼光谱和密度泛函理论计算的组合,研究了具有 kagome 晶格结构的二维二氧化硅(2D-SiO)的振动性质。我们在拉曼光谱中识别出晶体和非晶 2D-SiO 结构的特征,并表明在有限温度下,2D-SiO 晶格的稳定性受到声子-声子相互作用的强烈影响。我们的结果不仅提供了对 2D-SiO 和 kagome 晶格的振动性质的深入了解,还提出了一种快速无损的检测 2D-SiO 的方法。