Abstract
Low-valent tungsten species generated from WCl6 and N,N’-bis(trimethylsilyl)-2,5-dimethyldihydropyrazine (Si-Me2-DHP) promotes catalytic formation of N-phenyl-2,3,4,5-tetraarylpyrroles 3aa-ka from diarylacetylenes 1a-k and azobenzene (2a). An initial catalyst activation process is a three-electron reduction of WCl6 with Si-Me2-DHP to afford transient ‘WCl3‘ species. Catalytically active bis(imido)tungsten(VI) species via successive one-electron reduction and N=N bond cleavage of 2a was revealed by isolating W(=NPh)2Cl2(PMe2Ph)2 from imidotungsten(V) trichloride and 2a in the presence of PMe2Ph. The superior catalytic activity of the tungsten catalyst was clarified by a DFT study: activation energies for the key three steps, [2+2]-cycloaddition of W=NPh and diarylacetylene to form (iminoalkylidene)tungsten species, enyne metathesis with second diarylacetylene, and C-N bond formation, are reasonable values for the catalytic reaction at 180 °C. We also demonstrated the synthetic utility of the pentaarylpyrroles 3aa and 3ba as well as N-(2-bromophenyl)-2,3,4,5-tetraarylpyrrole 3ab by derivatizing to their pi-conjugated compounds 9aa, 10ba, and 11ab.
Supplementary materials
Title
Supporting Information
Description
NMR characterization of the tungsten complexes and the coupling products, summary for the X-ray diffraction study of 4, additive screening of N-phenyl-2,3,4,5-tetraarylpyrrole for-mation, UV-Vis spectra of pyrrole derivatives, CV of 3aa and 9aa, cartesian coordinates of optimized structures and transi-tion states, and energy diagrams for the catalytic processes are included in the Supporting Information.
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Title
CIF
Description
CIF of complex 4
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