| Literature DB >> 26828572 |
Hsiu-Wei Ou1, Kai-Hsuan Lo1, Wei-Ting Du1, Wei-Yi Lu1, Wan-Jung Chuang2, Bor-Hunn Huang1, Hsuan-Ying Chen2, Chu-Chieh Lin1.
Abstract
A series of sodium complexes bearing NNO-tridentate Schiff base ligands with an N-pendant arm were synthesized and used as catalysts for the ring-opening polymerization of L-lactide (L-LA). Electronic effects of ancillary ligands coordinated by sodium complexes substantially influence the catalysis, and ligands with electron-donating groups increase the catalytic activity of the sodium complexes for catalyzing L-LA polymerization. In particular, a sodium complex bearing a 4-methoxy group has the highest activity with conversion up to 95% within 30 s at 0 °C and a low polydispersity index of 1.13, whereas the 4-bromo group showed the poorest performance with regard to the catalytic rate of L-LA polymerization in the presence of benzyl alcohol (BnOH). (1)H NMR pulsed-gradient spin-echo diffusion experiments and single-crystal X-ray analyses showed that sodium complexes [L(H)Na(THF)]2 and [L(4-Cl)Na(THF)]2 were dinuclear species in both solution and the solid state. The kinetic results indicated a first-order dependence on each of [[L(4-Cl)Na]2], [l-LA], and [BnOH].Entities:
Year: 2016 PMID: 26828572 DOI: 10.1021/acs.inorgchem.5b02043
Source DB: PubMed Journal: Inorg Chem ISSN: 0020-1669 Impact factor: 5.165