Pathak A K, Mukherjee T, Maity D K
Chemistry Group, Bhabha Atomic Research Centre, Mumbai 400085, India.
J Chem Phys. 2006 Jan 14;124(2):024322. doi: 10.1063/1.2151177.
The work presents ab initio results on structure and electronic properties of Br2*-.nH2O(n=1-10) and Br2.nH2O(n=1-8) hydrated clusters to study the effects of an excess electron on the microhydration of the halide dimer. A nonlocal density functional, namely, Becke's half-and-half hybrid exchange-correlation functional is found to perform well on the present systems with a split valence 6-31++G(d,p) basis function. Geometry optimizations for all the clusters are carried out with several initial guess structures and without imposing any symmetry restriction. Br2*-.nH2O clusters prefer to have symmetrical double hydrogen-bonding structures. Results on Br2.nH2O(n>or=2) cluster show that the O atom of one H2O is oriented towards one Br atom and the H atom of another H2O is directed to other Br atom making Br2 to exist as Br+-Br- entity in the cluster. The binding and solvation energies are calculated for the Br2*-.nH2O and Br2.nH2O clusters. Calculations of the vibrational frequencies show that the formation of Br2*- and Br2 water clusters induces significant shifts from the normal modes of isolated water. Excited-state calculations are carried out on Br2*-.nH2O clusters following configuration interaction with single electron excitation procedure and UV-VIS absorption profiles are simulated. There is an excellent agreement between the present theoretical UV-VIS spectra of Br2*-.10H2O cluster and the reported transient optical spectra for Br2*- in aqueous solution.
该工作展示了关于Br2*-.nH2O(n = 1 - 10)和Br2.nH2O(n = 1 - 8)水合团簇的结构和电子性质的从头算结果,以研究过量电子对卤化物二聚体微水合作用的影响。发现一种非局域密度泛函,即Becke的半混合交换关联泛函,在使用分裂价6 - 31++G(d,p)基函数的当前体系中表现良好。对所有团簇进行几何优化时使用了几种初始猜测结构,且未施加任何对称性限制。Br2*-.nH2O团簇倾向于具有对称的双氢键结构。Br2.nH2O(n≥2)团簇的结果表明,一个H2O的O原子朝向一个Br原子,另一个H2O的H原子指向另一个Br原子,使得Br2在团簇中以Br+-Br-实体形式存在。计算了Br2*-.nH2O和Br2.nH2O团簇的结合能和溶剂化能。振动频率计算表明,Br2*-和Br2水团簇的形成导致与孤立水的正常模式有显著偏差。采用单电子激发的组态相互作用方法对Br2*-.nH2O团簇进行了激发态计算,并模拟了紫外 - 可见吸收光谱。Br2*-.10H2O团簇目前的理论紫外 - 可见光谱与报道的Br2*-在水溶液中的瞬态光谱之间有很好的一致性。