Institute of Physical Chemistry, University of Zurich, Zurich, Switzerland.
J Phys Condens Matter. 2012 Nov 7;24(44):445002. doi: 10.1088/0953-8984/24/44/445002. Epub 2012 Sep 19.
When a large amount of water is deposited onto a bare h-BN/Rh(111) nanomesh, the formation of ordered and stable nano-ice crystals in the pores has been experimentally observed. The present work proposes different possible models for the structure of the observed clusters, based on density functional theory calculations of two-dimensional water lattices adsorbed on free-standing hexagonal BN. Through the investigation of the electronic properties, the interaction with BN, and the distribution of the molecular dipoles, the most probable two-dimensional arrangement has been identified. Finally, a model is proposed for the nano-ice cluster trapped in the pore of the nanomesh, which constitutes 38 molecules distributed according to the most probable two-dimensional arrangement on free-standing BN. Structural and electronic properties of the optimized nano-ice cluster are also reported, and it is shown that the model is consistent with the experimental observation.
当大量的水沉积在裸露的 h-BN/Rh(111)纳米网上时,实验观察到在孔中形成了有序且稳定的纳米冰晶。本工作基于在自由-standing 六方 BN 上吸附的二维水格的密度泛函理论计算,提出了观察到的团簇的不同可能结构模型。通过研究电子性质、与 BN 的相互作用以及分子偶极子的分布,确定了最可能的二维排列。最后,提出了一个模型,用于捕获在纳米网孔中的纳米冰团簇,该团簇由根据在自由-standing BN 上的最可能二维排列分布的 38 个分子组成。还报告了优化后的纳米冰团簇的结构和电子性质,表明该模型与实验观察结果一致。