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Dinuclear Metal-Mediated Homo Base Pairs with Metallophilic Interactions: Theoretical Studies of G2M22+ (M?=?Cu, Ag, and Au) Ions.


ABSTRACT: Dinuclear metal-mediated homo base pairs are interesting clusters with highly symmetric structures and significant stabilities. The geometric and electronic structures of G2M22+ (G?=?Guanine, M?=?Cu, Ag or Au) cluster ions were studied with quantum chemical calculations. The lowest-energy isomers of G2M22+ cluster ions have C2h symmetries with an approximately antiparallel alignment of two sets of N-M???O groups being formed in the planar structures. The M-M distances are shorter than the sum of van der Waals radii of corresponding two homo coinage metal atoms, showing that metallophilic interactions significantly exist in these complexes. They have the large HOMO-LUMO gaps of about 5.80?eV at the DFT level and the bond dissociation energies of more than 5.60?eV at the DFT/B3LYP level, indicating that these cluster dications are highly stable. The second lowest-energy isomers stabilized by an approximately parallel alignment of one set of O-M-O group and one set of N-M-N group are found to be close to the lowest-energy isomers in energy. The barrier between the two isomers of G2M22+ cluster ions is significantly large, also showing that these lowest-energy isomers are very stable.

SUBMITTER: Cao GJ 

PROVIDER: S-EPMC5668421 | biostudies-literature | 2017 Nov

REPOSITORIES: biostudies-literature

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Dinuclear Metal-Mediated Homo Base Pairs with Metallophilic Interactions: Theoretical Studies of G<sub>2</sub>M<sub>2</sub><sup>2+</sup> (M = Cu, Ag, and Au) Ions.

Cao Guo-Jin GJ  

Scientific reports 20171102 1


Dinuclear metal-mediated homo base pairs are interesting clusters with highly symmetric structures and significant stabilities. The geometric and electronic structures of G<sub>2</sub>M<sub>2</sub><sup>2+</sup> (G = Guanine, M = Cu, Ag or Au) cluster ions were studied with quantum chemical calculations. The lowest-energy isomers of G<sub>2</sub>M<sub>2</sub><sup>2+</sup> cluster ions have C<sub>2h</sub> symmetries with an approximately antiparallel alignment of two sets of N-M∙∙∙O groups being f  ...[more]

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