Literature DB >> 18432627

Catalytic performance of symmetrical and unsymmetrical sulfur-containing pincer complexes: synthesis and tandem catalytic activity of the first PCS-pincer palladium complex.

Marcella Gagliardo1, Nicklas Selander, Nilesh C Mehendale, Gerard van Koten, Robertus J M Klein Gebbink, Kálmán J Szabó.   

Abstract

The synthesis and catalytic applications of a new aryl-based unsymmetrical PCS-pincer complex are reported. Preparation of the robust air- and moisture-stable PCS-pincer palladium complex 5[X] started from the symmetrical alpha,alpha'-dibromo-meta-xylene and involved the selective substitution of one bromide by PPh(2)(BH(3)), followed by substitution of the second bromide by SPh and subsequent introduction of the palladium. The new PCS complexes (5[X]) were employed as catalysts in two important organic transformations. Firstly, complex 5[Cl] displays high catalytic activity in aldol reactions but enters the catalytic cycle as a precatalyst. Secondly, complex 5[BF(4)] displays tandem catalytic activity in the coupling of allyl chlorides with aldehydes and imines in the presence of hexamethylditin. In these tandem catalytic reactions the first process is the conversion of allyl chlorides into trimethylallyltin (and trimethyltin chloride) with Sn(2)Me(6), which is followed by catalytic allylation of aldehyde and sulfonimine substrates. In addition, we present a new catalytic process for the one-pot allylation of 4-nitrobenzaldehyde with vinyloxirane. The catalytic performance of the novel PCS-pincer palladium complex was compared to those of its symmetrical PCP- and SCS-pincer complex analogues. It was concluded that the unsymmetrical PCS complex advantageously unifies the attractive catalytic features of the corresponding symmetrical pincer complexes including both (pi-) electron-withdrawing (such as phosphorus) or (sigma-) electron-donating (such as sulfur and nitrogen) heteroatoms. Thus, in the aldol reaction the PCS-pincer palladium complex 5[X] provides a high turnover frequency, while in the tandem process both reactions are catalysed with sufficiently high activity.

Entities:  

Year:  2008        PMID: 18432627     DOI: 10.1002/chem.200800350

Source DB:  PubMed          Journal:  Chemistry        ISSN: 0947-6539            Impact factor:   5.236


  4 in total

1.  Formation of C-C Bonds via Iridium-Catalyzed Hydrogenation and Transfer Hydrogenation.

Authors:  John F Bower; Michael J Krische
Journal:  Top Organomet Chem       Date:  2011-01-01       Impact factor: 1.311

2.  anti-Diastereo- and enantioselective carbonyl (hydroxymethyl)allylation from the alcohol or aldehyde oxidation level: allyl carbonates as allylmetal surrogates.

Authors:  Yong Jian Zhang; Jin Haek Yang; Sang Hoon Kim; Michael J Krische
Journal:  J Am Chem Soc       Date:  2010-04-07       Impact factor: 15.419

3.  Catalytic Isonitrile Insertions and Condensations Initiated by RNC-X Complexation.

Authors:  Suravi Chakrabarty; Shruti Choudhary; Arpit Doshi; Fa-Qiang Liu; Rishabh Mohan; Manasa P Ravindra; Dhruv Shah; Xun Yang; Fraser F Fleming
Journal:  Adv Synth Catal       Date:  2014-06-20       Impact factor: 5.837

4.  A synthetic, catalytic and theoretical investigation of an unsymmetrical SCN pincer palladacycle.

Authors:  Gavin W Roffe; Sarote Boonseng; Christine B Baltus; Simon J Coles; Iain J Day; Rhiannon N Jones; Neil J Press; Mario Ruiz; Graham J Tizzard; Hazel Cox; John Spencer
Journal:  R Soc Open Sci       Date:  2016-04-06       Impact factor: 2.963

  4 in total

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