Day Mary Beth, Kirschner Karl N, Shields George C
Department of Chemistry, Hamilton College, 198 College Hill Road, Clinton, New York 13323, USA.
J Phys Chem A. 2005 Aug 4;109(30):6773-8. doi: 10.1021/jp0513317.
The Gaussian-3 (G3) model chemistry method has been used to calculate the relative deltaG(o) values for all possible conformers of neutral clusters of water, (H2O)n, where n = 3-5. A complete 12-fold conformational search around each hydrogen bond produced 144, 1728, and 20,736 initial starting structures of the water trimer, tetramer, and pentamer. These structures were optimized with PM3, followed by HF/6-31G* optimization, and then with the G3 model chemistry. Only two trimers are present on the G3 potential energy hypersurface. We identified 5 tetramers and 10 pentamers on the potential energy and free-energy hypersurfaces at 298 K. None of these 17 structures were linear; all linear starting models folded into cyclic or three-dimensional structures. The cyclic pentamer is the most stable isomer at 298 K. On the basis of this and previous studies, we expect the cyclic tetramers and pentamers to be the most significant cyclic water clusters in the atmosphere.
高斯-3(G3)模型化学方法已被用于计算水的中性团簇(H2O)n(其中n = 3 - 5)所有可能构象异构体的相对ΔG(o)值。围绕每个氢键进行完整的12重构象搜索,得到了水三聚体、四聚体和五聚体的144、1728和20736个初始起始结构。这些结构先用PM3进行优化,接着用HF/6 - 31G*进行优化,然后再用G3模型化学方法进行优化。在G3势能超曲面上只存在两种三聚体。我们在298 K的势能和自由能超曲面上识别出了5种四聚体和10种五聚体。这17种结构均不是线性的;所有线性起始模型都折叠成了环状或三维结构。环状五聚体在298 K时是最稳定的异构体。基于此项研究及之前的研究,我们预计环状四聚体和五聚体是大气中最重要的环状水团簇。