The synthesis, characterization, and reactivity of pyrrole-based Ti(III) and Ti(IV) PNP pincer complexes are described. [P(NH)P-Pr] () reacts with [TiCl(THF)] at room temperature in the presence of NEt to afford the Ti(IV) complex [Ti(PNP)(Cl)]. This complex reacts with acetone and cyclopentanone to give complexes [Ti(PNO-Pr)(Cl)] and [Ti(PNO-Pr)(Cl)], respectively. Insertion of the ketone into the Ti(IV)-P bond took place, forming a new tridendate PNO-ligand. Treatment of [TiCl(THF)] with the lithium salt of [P(NH)P-Pr] afforded, upon workup, complex [Ti(PNP-Pr)(Cl)(THF)], a paramagnetic complex with an μ value of 1.8(1) μ which corresponds to one unpaired electron and a formal oxidation state of +III. This compound does not react with ketones. A mechanistic proposal based on DFT calculations is presented. Ketone insertion proceeds via an associative reaction initiated by ketone coordination at the metal center, followed by the opening of the five-membered chelate ring, and finally an intramolecular nucleophilic attack of the noncoordinated phosphine arm at the carbonyl atom of the ketone. All complexes were characterized by X-ray crystallography.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10598877PMC
http://dx.doi.org/10.1021/acs.organomet.3c00327DOI Listing

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The synthesis, characterization, and reactivity of pyrrole-based Ti(III) and Ti(IV) PNP pincer complexes are described. [P(NH)P-Pr] () reacts with [TiCl(THF)] at room temperature in the presence of NEt to afford the Ti(IV) complex [Ti(PNP)(Cl)]. This complex reacts with acetone and cyclopentanone to give complexes [Ti(PNO-Pr)(Cl)] and [Ti(PNO-Pr)(Cl)], respectively.

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