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JOURNALS // Mendeleev Communications // Archive

Mendeleev Commun., 2020 Volume 30, Issue 3, Pages 276–278 (Mi mendc1168)

This article is cited in 7 papers

Communications

Dehydrogenation of amine–boranes catalyzed by a $\mathrm{PC}_{sp^3}\mathrm{P}$ pincer iridium complex

V. A. Kirkinaa, E. S. Osipovaa, O. A. Filippova, G. A. Silantyeva, D. Gelmanb, E. S. Shubinaa, N. V. Belkovaa

a A.N. Nesmeyanov Institute of Organoelement Compounds of Russian Academy of Sciences, Moscow, Russian Federation
b Institute of Chemistry, The Hebrew University, Edmond Safra Campus, Jerusalem, Israel

Abstract: Dibenzobarrelene-based $\mathrm{PC}_{sp^3}\mathrm{P}$ pincer iridium complex bearing dangling $\mathrm{CH_{2}OH}$ groups, $(\mathrm{PC}_{sp^3}\mathrm{P^{CH_{2}OH}})\mathrm{IrH(Cl)}$, catalyzes the dehydrogenation of amine–boranes at the reaction rate changing counter intuitively in the order: $\mathrm{Me_2NH \cdot BH_3 > Bu^t NH_2 \cdot BH_3 > NH_3 \cdot BH_3}$. The spectral (IR and NMR) data and DFT/M06 calculations have revealed that the binding of amine–boranes to the dangling OH group leads to an additional stabilization of the $\mathrm{Ir \cdots OH}$ bond, thus hampering the dehydrogenation reaction, whereas the amine–borane coordination to iridium entails a fac- to mer-transformation of the complex and initiates the catalytic $\mathrm{H_2}$ evolution.

Keywords: iridium pincer complexes, catalytic dehydrogenation, amine–boranes, molecular spectroscopy, DFT calculations.

Language: English

DOI: 10.1016/j.mencom.2020.05.004



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