Synthesis and Properties of Para-substituted NCN-pincer Palladium and Platinum Complexes
Authors
Affiliations
A variety of para-substituted NCN-pincer palladium(II) and platinum(II) complexes [MX(NCN-Z)] (M=Pd(II), Pt(II); X=Cl, Br, I; NCN-Z=[2,6-(CH(2)NMe(2))(2)C(6)H(2)-4-Z](-); Z=NO(2), COOH, SO(3)H, PO(OEt)(2), PO(OH)(OEt), PO(OH)(2), CH(2)OH, SMe, NH(2)) were synthesised by routes involving substitution reactions, either prior to or, notably, after metalation of the ligand. The solubility of the pincer complexes is dominated by the nature of the para substituent Z, which renders several complexes water-soluble. The influence of the para substituent on the electronic properties of the metal centre was studied by (195)Pt NMR spectroscopy and DFT calculations. Both the (195)Pt chemical shift and the calculated natural population charge on platinum correlate linearly with the sigma(p) Hammett substituent constants, and thus the electronic properties of predesigned pincer complexes can be predicted. The sigma(p) value for the para-PtI group itself was determined to be -1.18 in methanol and -0.72 in water/methanol (1/1). Complexes substituted with protic functional groups (CH(2)OH, COOH) exist as dimers in the solid state due to intermolecular hydrogen-bonding interactions.
Batema G, Korstanje T, Guillena G, Rodriguez G, Lutz M, van Klink G Molecules. 2021; 26(7).
PMID: 33810499 PMC: 8038112. DOI: 10.3390/molecules26071888.
Electronic influence of substitution on the pyridine ring within NNN pincer-type molecules.
Schwartz T, Burnett M, Green K Dalton Trans. 2020; 49(7):2356-2363.
PMID: 32022045 PMC: 7323500. DOI: 10.1039/c9dt04714j.
Kimura A, Ishida T ACS Omega. 2019; 3(6):6737-6747.
PMID: 31458846 PMC: 6644749. DOI: 10.1021/acsomega.8b01095.
Synthesis and reactivity of palladium(II) fluoride complexes containing nitrogen-donor ligands.
Ball N, Kampf J, Sanford M Dalton Trans. 2009; (2):632-40.
PMID: 20024002 PMC: 2855696. DOI: 10.1039/b914426a.
Jeon S, Loveless D, Yount W, Craig S Inorg Chem. 2006; 45(26):11060-8.
PMID: 17173466 PMC: 2537467. DOI: 10.1021/ic061188b.