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

We report the isolation and spectroscopic identification of the eight-coordinated alkaline earth metal–dinitrogen complexes M(N 2 ) 8 (M=Ca, Sr, Ba) possessing cubic ( O h ) symmetry in a low-temperature neon matrix. The analysis of the electronic structure reveals that the metal-N 2 bonds are mainl...

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Veröffentlicht in:Nature communications 2019-07, Vol.10 (1), p.3375-8, Article 3375
Hauptverfasser: Wang, Qian, Pan, Sudip, Lei, Shujun, Jin, Jiaye, Deng, Guohai, Wang, Guanjun, Zhao, Lili, Zhou, Mingfei, Frenking, Gernot
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Sprache:eng
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Zusammenfassung:We report the isolation and spectroscopic identification of the eight-coordinated alkaline earth metal–dinitrogen complexes M(N 2 ) 8 (M=Ca, Sr, Ba) possessing cubic ( O h ) symmetry in a low-temperature neon matrix. The analysis of the electronic structure reveals that the metal-N 2 bonds are mainly due to [M(d π )]→(N 2 ) 8 π backdonation, which explains the observed large red-shift in N-N stretching frequencies. The adducts M(N 2 ) 8 have a triplet ( 3 A 1g ) 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(N 2 ) 8 ] + (M=Ca, Sr). The study of main group complexes remains important to our fundamental understanding of main group element bonding and properties. Here the authors isolate and spectroscopically characterize a series of 8-coordinated alkaline earth metal–dinitrogen complexes M(N 2 ) 8 (M=Ca, Sr, Ba) in a low-temperature neon matrix.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-019-11323-5