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Synthesis and Coordination Behavior of a New Hybrid Bidentate Ligand with Phosphine and Silylene Donors.


ABSTRACT: This work describes the synthesis and coordination behavior of a new mixed-donor ligand PhC(NtBu)2 SiC6 H4 PPh2 (1) containing both silylene and phosphine donor sites. Ligand 1 was synthesized from a reaction of ortho-lithiated diphenylphosphinobenzene (LiC6 H4 PPh2 ) with chlorosilylene (PhC(NtBu)2 SiCl). Treatment of 1 with Se and GeCl2 resulted in SiIV compounds 2 and 3 by selective oxidation of the silylene donor. This strong ?-donor ligand induces dissociation of CuCl and PhBCl2 leading to formation of ionic complexes 4 and 5 respectively. The reaction of 1 with ZnCl2 and AlCl3 resulted in the formation of chelate complexes 5 and 7, respectively, while treatment with EtAlCl2 and GaCl3 forms monodentate complexes 8 and 9. X-ray analysis of 4 showed that the copper is in the spiro center of the two five-membered rings. Moreover, the copper(I)chloride has not been oxidized but dissociates to Cu+ and [CuCl2 ]- . All the compounds are well characterized by mass spectrometry, elemental analysis, NMR spectroscopy, and single-crystal X-ray diffraction studies.

SUBMITTER: Nazish M 

PROVIDER: S-EPMC7898821 | biostudies-literature | 2021 Jan

REPOSITORIES: biostudies-literature

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Synthesis and Coordination Behavior of a New Hybrid Bidentate Ligand with Phosphine and Silylene Donors.

Nazish Mohd M   Siddiqui Mujahuddin M MM   Kumar Sarkar Samir S   Münch Annika A   Legendre Christina M CM   Herbst-Irmer Regine R   Stalke Dietmar D   Roesky Herbert W HW  

Chemistry (Weinheim an der Bergstrasse, Germany) 20201214 5


This work describes the synthesis and coordination behavior of a new mixed-donor ligand PhC(NtBu)<sub>2</sub> SiC<sub>6</sub> H<sub>4</sub> PPh<sub>2</sub> (1) containing both silylene and phosphine donor sites. Ligand 1 was synthesized from a reaction of ortho-lithiated diphenylphosphinobenzene (LiC<sub>6</sub> H<sub>4</sub> PPh<sub>2</sub> ) with chlorosilylene (PhC(NtBu)<sub>2</sub> SiCl). Treatment of 1 with Se and GeCl<sub>2</sub> resulted in Si<sup>IV</sup> compounds 2 and 3 by selective o  ...[more]

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