Department of Natural Science, Universidade Federal de São João Del Rei, São João Del Rei, MG, Brazil.
Phys Chem Chem Phys. 2013 Mar 28;15(12):4303-9. doi: 10.1039/c3cp44250k.
Imogolite is a single-walled aluminosilicate nanotube (NT) found in nature that can be easily synthesized, as well as its analogue aluminogermanate NT. Based on geometrical assumptions and pKa values, species such as H3PO4, H3PO3, H3AsO3, H3AsO4 could also be candidates to form imogolite-like structures. In the present work, we provide insights about the stability, electronic, structural and mechanical properties of possible imogolite like NTs by means of self-consistent charge density-functional tight-binding method (SCC-DFTB). Similarly to aluminogermanate, where the tetrahedral silicate groups are replaced by germanate, in this work tetrahedral silicate groups are substituted by phosphate, phosphite, arsenate and arsenite units in the imogolite structure. Detailed analysis is focused on structural properties, strain energy, band gap and Mulliken charges distribution. The calculated strain energy curves for all studied zigzag imogolite-like NTs present well-defined minima, which change as a consequence of composition variation. Moreover, the strain energy curves of armchair imogolite-like NTs also present minima, although in all cases less stable than zigzags by at least 2.2 meV per atom. The insulating NT behaviour changes after internal modification from silicate to phosphate, phosphite, arsenate and arsenite, as well as the charge distribution inside and outside the nanotubes.
磷灰石是一种在自然界中发现的单壁铝硅酸盐纳米管 (NT),可以很容易地合成,其类似物铝锗酸盐 NT 也是如此。基于几何假设和 pKa 值,H3PO4、H3PO3、H3AsO3、H3AsO4 等物质也可能成为形成类磷灰石结构的候选物质。在本工作中,我们通过自洽电荷密度泛函紧束缚方法 (SCC-DFTB) 提供了关于可能的类磷灰石 NT 稳定性、电子、结构和机械性能的见解。与铝锗酸盐相似,其中四面体硅酸盐基团被锗酸盐取代,在这项工作中,四面体硅酸盐基团被磷灰石结构中的磷酸盐、亚磷酸盐、砷酸盐和亚砷酸盐单元取代。详细分析侧重于结构特性、应变能、带隙和 Mulliken 电荷分布。所有研究的锯齿形类磷灰石 NT 的计算应变能曲线都呈现出明确的最小值,这些最小值随着组成变化而变化。此外,类磷灰石 NT 的扶手椅型应变能曲线也呈现出最小值,尽管在所有情况下,它们的稳定性都比锯齿形至少低 2.2 meV/原子。从硅酸盐到磷酸盐、亚磷酸盐、砷酸盐和亚砷酸盐的内部修饰以及纳米管内外的电荷分布改变了 NT 的绝缘行为。