Heterobimetallic complexes with inequivalent bridging alkyl chains are very often invoked as key intermediates in many catalytic processes, yet their interception and structural characterization are lacking. Such complexes have been prepared from reactions of the cationic cyclometalated hafnocene [Cp Cp Hf][B(C F ) ] (1) with main group metal alkyls to afford the corresponding hetero-bridged cationic products, [Cp Cp Hf(μ-R)E(R) ][B(C F ) ] (E=Al or Zn; R=Me, Et, or iBu). NMR and DFT studies demonstrate that both bridging alkyls establish agostic interactions with Hf, which are appreciably stronger for ethyl rather than methyl groups. Hf-Al and Hf-Zn distances are surprisingly short and only slightly longer than computed Hf-Al or Hf-Zn single bond lengths (2.80 Å). Finally, a reaction of [Cp Cp Hf(μ-Me)Zn(Me)][B(C F ) ] with excess ZnMe yields an unprecedented heterotrimetallic species, [(Cp ) Hf(μ-Me)(ZnMe)(μ -CH )ZnMe][B(C F ) ], the detailed structure of which is elucidated by a combination of NMR spectroscopic methods and molecular calculations.
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http://dx.doi.org/10.1002/chem.201905699 | DOI Listing |
Inorg Chem
May 2024
Department of Chemistry, Biology and Biotechnology and CIRCC, University of Perugia and CIRCC, Via Elce di Sotto 8, 06123 Perugia, Italy.
Cationic cyclometalated hafnocenes [CpCpHf][B(CF)] () and [CpCpHf][B(CF)] ( and ) were synthesized from the corresponding [(Cp)HfMe][B(CF)] () and [(Cp)HfMe][B(CF)] () complexes via C-H activation. , , and , mimicking a propagating M-polymeryl species (M = transition metal) with or without a β-methyl branch on the metalated chains, serve to investigate whether and how the nature of the last inserted olefin molecules changes the structure, stability, and reactivity of the corresponding heterobimetallic complexes, formed in the presence of aluminum- or zinc-alkyl chain transfer agents (CTAs), which are considered relevant intermediates in coordinative chain transfer polymerization (CCTP) and chain shuttling polymerization (CSP) technologies. NMR and DFT data indicate no major structural difference between the resulting heterobridged complexes, all characterized by the presence of multiple α-agostic interactions.
View Article and Find Full Text PDFChemistry
March 2020
Dipartimento di Chimica, Biologia e Biotecnologie and CIRCC, Università degli Studi di Perugia, Via Elce di Sotto 8, 06123, Perugia, Italy.
Invited for the cover of this issue is the group of Cristiano Zuccaccia at the Università degli Studi di Perugia. The image depicts a relation of the nuances of chemical bonding to the diverse ways that animals "bind" to their natural surroundings. Read the full text of the article at 10.
View Article and Find Full Text PDFChemistry
March 2020
Dipartimento di Chimica, Biologia e Biotecnologie and CIRCC, Università degli Studi di Perugia, Via Elce di Sotto 8, 06123, Perugia, Italy.
Heterobimetallic complexes with inequivalent bridging alkyl chains are very often invoked as key intermediates in many catalytic processes, yet their interception and structural characterization are lacking. Such complexes have been prepared from reactions of the cationic cyclometalated hafnocene [Cp Cp Hf][B(C F ) ] (1) with main group metal alkyls to afford the corresponding hetero-bridged cationic products, [Cp Cp Hf(μ-R)E(R) ][B(C F ) ] (E=Al or Zn; R=Me, Et, or iBu). NMR and DFT studies demonstrate that both bridging alkyls establish agostic interactions with Hf, which are appreciably stronger for ethyl rather than methyl groups.
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