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Generation and Identification of the Linear OCBNO and OBNCO Molecules with 24 Valence Electrons.


ABSTRACT: Two structural isomers containing five second-row element atoms with 24 valence electrons were generated and identified by matrix-isolation IR spectroscopy and quantum chemical calculations. The OCBNO complex, which is produced by the reaction of boron atoms with mixtures of carbon monoxide and nitric oxide in solid neon, rearranges to the more stable OBNCO isomer on UV excitation. Bonding analysis indicates that the OCBNO complex is best described by the bonding interactions between a triplet-state boron cation with an electron configuration of (2s)0 (2p? )0 (2p? )2 and the CO/NO- ligands in the triplet state forming two degenerate electron-sharing ? bonds and two ligand-to-boron dative ? bonds.

SUBMITTER: Deng G 

PROVIDER: S-EPMC7839540 | biostudies-literature | 2021 Jan

REPOSITORIES: biostudies-literature

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Generation and Identification of the Linear OCBNO and OBNCO Molecules with 24 Valence Electrons.

Deng Guohai G   Pan Sudip S   Jin Jiaye J   Wang Guanjun G   Zhao Lili L   Zhou Mingfei M   Frenking Gernot G  

Chemistry (Weinheim an der Bergstrasse, Germany) 20201203 1


Two structural isomers containing five second-row element atoms with 24 valence electrons were generated and identified by matrix-isolation IR spectroscopy and quantum chemical calculations. The OCBNO complex, which is produced by the reaction of boron atoms with mixtures of carbon monoxide and nitric oxide in solid neon, rearranges to the more stable OBNCO isomer on UV excitation. Bonding analysis indicates that the OCBNO complex is best described by the bonding interactions between a triplet-s  ...[more]

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