Niu Zhenwei, Tang Mei, Ge Nina
School of National Defense Science & Technology, Southwest University of Science and Technology, Mianyang 621010, P. R. China.
Phys Chem Chem Phys. 2020 Nov 25;22(45):26487-26501. doi: 10.1039/d0cp04332j.
The various structural candidates of anionic, neutral, and cationic water clusters OHm(H2O)7 (m = 0, ±1) have been globally predicted by combining the particle swarm optimization method and quantum chemical calculations. Geometry optimization and vibrational analysis for the optimal structures were performed with the MP2/aug-cc-pVDZ method, and the energy profile was further refined at the CCSD(T)/CBS level. Special attention was paid to the relationships between configurations and energies, particularly the first solvation shell coordination number of OH- and OH. For OH-(H2O)7, OH(H2O)7, and OH+(H2O)7 clusters, the most stable species at room temperature are predicted to be the tetra-solvated multi-ring structure A6, the tri-solvated hemibond cage structure N1, and the single five-membered ring structure C2, respectively. The temperature effects on the stability of these three systems were also explored via Gibbs free energies. Furthermore, for the OH-(H2O)7 clusters, the assignments of vibrational transitions in the OH stretching region are in good agreement with the studies of small hydroxide ion-water clusters, and the IR spectra of two isomers (tetra-solvated multi-ring A6 and penta-solvated cage A3) may match future experimental observation well. By topological analysis and reduced density gradient analysis, the structural characteristics and bonding strengths of the studied clusters were investigated. This work indicates the excellent performance of the PSO search algorithm and CALYPSO on water clusters, and may further provide extensive insights into the chemical behavior such as the transport mechanism of OH- ions and OH radicals in the aqueous phase.
通过结合粒子群优化方法和量子化学计算,对阴离子、中性和阳离子水簇OHm(H2O)7(m = 0, ±1)的各种结构候选物进行了全局预测。使用MP2/aug-cc-pVDZ方法对最优结构进行几何优化和振动分析,并在CCSD(T)/CBS水平上进一步优化能量分布。特别关注构型与能量之间的关系,尤其是OH-和OH的第一溶剂化层配位数。对于OH-(H2O)7、OH(H2O)7和OH+(H2O)7簇,预测在室温下最稳定的物种分别是四溶剂化多环结构A6、三溶剂化半键笼状结构N1和单五元环结构C2。还通过吉布斯自由能探索了温度对这三个系统稳定性的影响。此外,对于OH-(H2O)7簇,OH伸缩区域振动跃迁的归属与小氢氧根离子-水簇的研究结果吻合良好,两种异构体(四溶剂化多环A6和五溶剂化笼状A3)的红外光谱可能与未来的实验观测结果很好地匹配。通过拓扑分析和密度降低梯度分析,研究了所研究簇的结构特征和键合强度。这项工作表明了PSO搜索算法和CALYPSO在水簇方面的优异性能,并可能进一步为诸如OH-离子和OH自由基在水相中的传输机制等化学行为提供广泛的见解。