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Synthesis and Reactivity of Triangular Heterometallic Complexes Containing Zn-Zn Bond.

Shengjie JiangYanping CaiAmbre CarpentierIker Del RosalLaurent MaronXin Xu
Published in: Inorganic chemistry (2022)
This work provides a facile access to a series of triangular [Zn 2 M] (M = group 10 and 11 metals) clusters. Treatment of Zn-Zn-bonded compounds [ L Zn-Zn L ] ( L = CH 3 C(2,6- i Pr 2 C 6 H 3 N)CHC(CH 3 )(NCH 2 CH 2 PR 2 ); R = Ph, i Pr) with zero-valent transition-metal reagents selectively afforded the corresponding triangular clusters [Zn 2 M], where M = Ni(0), Pd(0), and Pt(0). Notably, the isoelectronic triangular clusters [Zn 2 M] + , where M = Ag(I) and Cu(I), could also be obtained by reactions of [LZn-ZnL] with AgOTf and CuOTf, respectively. The [Zn 2 Ag] + complex containing elusive Zn-Ag bonds was investigated by density functional theory analysis, showing a 3c-2e bonding feature in the metallic ring. The electrochemical behaviors of [Zn 2 M] complexes were examined and revealed the donation of electron density from the Zn-Zn σ-bond to the metal centers. Reaction of the [Zn 2 Ni] complex with isocyanide gave heterometallic species by coordination of isocyanide to the nickel center, keeping the trimetallic ring core structure intact. In contrast, the Zn-Zn bond was rapidly cleaved upon treatment of the [Zn 2 Ni] complex with dihydrogen or phenyl acetylene, generating the hydride- or acetylide-bridged heterotrimetallic complex.
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