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  5. A Step beyond the Feltham–Enemark Notation: Spectroscopic and Correlated<i>ab Initio</i>Computational Support for an Antiferromagnetically Coupled M(II)–(NO)<sup>−</sup>Description of Tp*M(NO) (M = Co, Ni)

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Article
en
2011

A Step beyond the Feltham–Enemark Notation: Spectroscopic and Correlated<i>ab Initio</i>Computational Support for an Antiferromagnetically Coupled M(II)–(NO)<sup>−</sup>Description of Tp*M(NO) (M = Co, Ni)

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en
2011
Vol 133 (46)
Vol. 133
DOI: 10.1021/ja206042k

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Dean Toste
Dean Toste

University of California, Berkeley

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Neil C. Tomson
Mark R. Crimmin
Taras Petrenko
+7 more

Abstract

Multiple spectroscopic and computational methods were used to characterize the ground-state electronic structure of the novel {CoNO}(9) species Tp*Co(NO) (Tp* = hydro-tris(3,5-Me(2)-pyrazolyl)borate). The metric parameters about the metal center and the pre-edge region of the Co K-edge X-ray absorption spectrum were reproduced by density functional theory (DFT), providing a qualitative description of the Co-NO bonding interaction as a Co(II) (S(Co) = 3/2) metal center, antiferromagnetically coupled to a triplet NO(-) anion (S(NO) = 1), an interpretation of the electronic structure that was validated by ab initio multireference methods (CASSCF/MRCI). Electron paramagnetic resonance (EPR) spectroscopy revealed significant g-anisotropy in the S = ½ ground state, but the linear-response DFT performed poorly at calculating the g-values. Instead, CASSCF/MRCI computational studies in conjunction with quasi-degenerate perturbation theory with respect to spin-orbit coupling were required for obtaining accurate modeling of the molecular g-tensor. The computational portion of this work was extended to the diamagnetic Ni analogue of the Co complex, Tp*Ni(NO), which was found to consist of a Ni(II) (S(Ni) = 1) metal center antiferromagnetically coupled to an S(NO) = 1 NO(-). The similarity between the Co and Ni complexes contrasts with the previously studied Cu analogues, for which a Cu(I) bound to NO(0) formulation has been described. This discrepancy will be discussed along with a comparison of the DFT and ab initio computational methods for their ability to predict various spectroscopic and molecular features.

How to cite this publication

Neil C. Tomson, Mark R. Crimmin, Taras Petrenko, Lauren E. Rosebrugh, Stephen Sproules, W. Christopher Boyd, Robert G. Bergman, Serena DeBeer, Dean Toste, Karl Wieghardt (2011). A Step beyond the Feltham–Enemark Notation: Spectroscopic and Correlated<i>ab Initio</i>Computational Support for an Antiferromagnetically Coupled M(II)–(NO)<sup>−</sup>Description of Tp*M(NO) (M = Co, Ni). , 133(46), DOI: https://doi.org/10.1021/ja206042k.

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Publication Details

Type

Article

Year

2011

Authors

10

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1021/ja206042k

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