Microsolvation versus Encapsulation in Mono, Di, and Trivalent Cations

被引:4
|
作者
Florez, Elizabeth [1 ]
Gomez, Sara [2 ]
Acelas, Nancy [1 ]
Hadad, Cacier [3 ]
Restrepo, Albeiro [3 ]
机构
[1] Univ Medellin, Fac Ciencias Basicas, Mat&mpac, Grp Mat Impacto, Carrera 87 30-65, Medellin 050026, Colombia
[2] Scuola Normale Super Pisa, Classe Sci, Piazza Cavalieri 7, I-56126 Pisa, Italy
[3] Univ Antioquia UdeA, Inst Quim, Calle 70 52-21, Medellin, Colombia
关键词
Bonding interactions; encapsulation; microsolvation; NBO; NCI; QTAIM; Water clusters; EFFECTIVE IONIC-RADII; SPECTROSCOPIC EVIDENCE; BASIS-SETS; WATER; CLUSTERS; ENERGIES; PROGRAM;
D O I
10.1002/cphc.202200456
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The effects of the formal charge in the stability and bonding of water cavities when solvating a cation are studied here using [X(H2O)(20)](q+) clusters starting with the well known 5(12) isomer of (water)(20), placing a single mono, di, or trivalent Xq+ cation at the interior, and then optimizing and characterizing the resulting clusters. Highly correlated interaction and deformation energies are calculated using the CCSD(T)-DLPNO formalism. Bonding interactions are characterized using the tools provided by the quantum theory of atoms in molecules, natural bond orbitals, and non-covalent surfaces. Our results indicate that water to water hydrogen bonds are sensibly strengthened resulting in strong cooperative effects, which amount to approximate to 2 kcal/mol per hydrogen bond in the bare cavity and to larger values for the systems including the cations. Approximate encapsulation, that is, surrounding the cation by a network of hydrogen bonds akin to the well known methane clathrate seems to be preferred by cations with smaller charge densities while microsolvation, that is, cluster structures having explicit XMIDLINE HORIZONTAL ELLIPSISO contacts seem to be preferred by cations with larger charge densities which severely deform the cavity.
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页数:11
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