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Octa-coordinated alkaline earth metal-dinitrogen complexes M(N2)8 (M=Ca, Sr, Ba).


ABSTRACT: We report the isolation and spectroscopic identification of the eight-coordinated alkaline earth metal-dinitrogen complexes M(N2)8 (M=Ca, Sr, Ba) possessing cubic (Oh) symmetry in a low-temperature neon matrix. The analysis of the electronic structure reveals that the metal-N2 bonds are mainly due to [M(dπ)]→(N2)8 π backdonation, which explains the observed large red-shift in N-N stretching frequencies. The adducts M(N2)8 have a triplet (3A1g) electronic ground state and exhibit typical bonding features of transition metal complexes obeying the 18-electron rule. We also report the isolation and bonding analysis of the charged dinitrogen complexes [M(N2)8]+ (M=Ca, Sr).

SUBMITTER: Wang Q 

PROVIDER: S-EPMC6662891 | biostudies-literature | 2019 Jul

REPOSITORIES: biostudies-literature

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Octa-coordinated alkaline earth metal-dinitrogen complexes M(N<sub>2</sub>)<sub>8</sub> (M=Ca, Sr, Ba).

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

Nature communications 20190729 1


We report the isolation and spectroscopic identification of the eight-coordinated alkaline earth metal-dinitrogen complexes M(N<sub>2</sub>)<sub>8</sub> (M=Ca, Sr, Ba) possessing cubic (O<sub>h</sub>) symmetry in a low-temperature neon matrix. The analysis of the electronic structure reveals that the metal-N<sub>2</sub> bonds are mainly due to [M(d<sub>π</sub>)]→(N<sub>2</sub>)<sub>8</sub> π backdonation, which explains the observed large red-shift in N-N stretching frequencies. The adducts M(N<  ...[more]

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