Construction of a monoanionic S,N,S-pincer ligand with a pyrrole core by sequential [1,2] phospho-Fries rearrangement. Characterization of palladium and silver coordination complexes

The synthesis of an S,NH,S-pincer ligand possessing a pyrrole core and two O,O-diethylthiophosphonyl groups to design P=S lateral coordination sites is reported. The synthetic procedure to produce this ligand makes use of the nitrogen atom of the pyrrole heterocycle to successively functionalize the...

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Veröffentlicht in:Dalton transactions : an international journal of inorganic chemistry 2010-01, Vol.39 (11), p.2942-2946
Hauptverfasser: Fraix, Aurore, Lutz, Martin, Spek, Anthony L, Klein Gebbink, Robertus J M, van Koten, Gerard, Salaün, Jean-Yves, Jaffrès, Paul-Alain
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container_end_page 2946
container_issue 11
container_start_page 2942
container_title Dalton transactions : an international journal of inorganic chemistry
container_volume 39
creator Fraix, Aurore
Lutz, Martin
Spek, Anthony L
Klein Gebbink, Robertus J M
van Koten, Gerard
Salaün, Jean-Yves
Jaffrès, Paul-Alain
description The synthesis of an S,NH,S-pincer ligand possessing a pyrrole core and two O,O-diethylthiophosphonyl groups to design P=S lateral coordination sites is reported. The synthetic procedure to produce this ligand makes use of the nitrogen atom of the pyrrole heterocycle to successively functionalize the ortho-positions with the two O,O-diethylthiophosphonyl moieties. The ortho-functionalization arises from a repetition of a [1,2] base-induced rearrangement allowing the transformation of O,O-diethyl-N-pyrollylthiophosphoramidate to ortho-thiophosphonate. The coordination properties of this tridentate S,NH,S-ligand have been investigated with silver and palladium metals. Reaction of the monoanionic S,N,S-pincer ligand 4 (O,O,O,O-tetraethylpyrrol-2,5-yl-dithiophosphonate) with PdCl(2)(MeCN)(2) at room temperature in the presence of triethylamine gives rise to the formation of the eta(3)-complex [Pd(eta(3)-4')Cl] 5. Ligand 4 also reacts with silver oxide in dichloromethane to produce complex which, in the solid state, exists as a tetramer involving an almost linear arrangement of four silver atoms.
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The ortho-functionalization arises from a repetition of a [1,2] base-induced rearrangement allowing the transformation of O,O-diethyl-N-pyrollylthiophosphoramidate to ortho-thiophosphonate. The coordination properties of this tridentate S,NH,S-ligand have been investigated with silver and palladium metals. Reaction of the monoanionic S,N,S-pincer ligand 4 (O,O,O,O-tetraethylpyrrol-2,5-yl-dithiophosphonate) with PdCl(2)(MeCN)(2) at room temperature in the presence of triethylamine gives rise to the formation of the eta(3)-complex [Pd(eta(3)-4')Cl] 5. 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Characterization of palladium and silver coordination complexes</title><title>Dalton transactions : an international journal of inorganic chemistry</title><addtitle>Dalton Trans</addtitle><description>The synthesis of an S,NH,S-pincer ligand possessing a pyrrole core and two O,O-diethylthiophosphonyl groups to design P=S lateral coordination sites is reported. The synthetic procedure to produce this ligand makes use of the nitrogen atom of the pyrrole heterocycle to successively functionalize the ortho-positions with the two O,O-diethylthiophosphonyl moieties. The ortho-functionalization arises from a repetition of a [1,2] base-induced rearrangement allowing the transformation of O,O-diethyl-N-pyrollylthiophosphoramidate to ortho-thiophosphonate. The coordination properties of this tridentate S,NH,S-ligand have been investigated with silver and palladium metals. 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subjects Anions - chemistry
Chemical Sciences
Coordination Complexes - chemical synthesis
Coordination Complexes - chemistry
Crystallography, X-Ray
Ligands
Molecular Conformation
Organic chemistry
Organothiophosphates - chemistry
Palladium - chemistry
Pyrroles - chemistry
Silver - chemistry
Temperature
title Construction of a monoanionic S,N,S-pincer ligand with a pyrrole core by sequential [1,2] phospho-Fries rearrangement. Characterization of palladium and silver coordination complexes
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