Chemistry Research Laboratory, Department of Chemistry , University of Oxford , 12 Mansfield Road , Oxford OX1 3TA , United Kingdom.
Inorg Chem. 2018 Nov 19;57(22):14240-14248. doi: 10.1021/acs.inorgchem.8b02271. Epub 2018 Oct 30.
A series of eight new bis(alkoxy)bis(phenoxy-imine)titanium(IV) catalysts, coordinated by Schiff base ligands derived from o-vanillin (2-hydroxy-3-methoxybenzaldehyde), show good activity and control for the ring-opening polymerization of ε-caprolactone and ω-pentadecalactone. The new complexes are easily prepared in two high-yield steps from commercial reagents. The new ligands can all adopt two different coordination modes, depending on the steric bulk on the imine: a six-membered N-O chelate and/or a five-membered O-O chelate. The complexes show three different structures, depending on the ligand coordination mode: type A (N-O:N-O), type B (N-O:O-O), and type C (O-O:O-O). In all cases, the structures were confirmed in solution using variable temperature NMR spectroscopy and in the solid state using X-ray crystallography. The complex structure influences the polymerization rate, with the catalytic activities decreasing in the order: type C > type B > type A for both monomers. Overall, the work demonstrates potential to use these new ligands to access particular coordination modes, which allows enhancement of catalytic activity.
一系列八个新的双(烷氧基)双(苯氧基亚胺)钛(IV)催化剂,由邻香草醛(2-羟基-3-甲氧基苯甲醛)衍生的希夫碱配体配位,对ε-己内酯和ω-十五内酯的开环聚合表现出良好的活性和控制。新的配合物可以很容易地从商业试剂通过两步高产率制备。新的配体可以根据亚胺的空间位阻采用两种不同的配位方式:六元 N-O 螯合和/或五元 O-O 螯合。根据配体的配位方式,配合物呈现出三种不同的结构:A 型(N-O:N-O)、B 型(N-O:O-O)和 C 型(O-O:O-O)。在所有情况下,均通过变温 NMR 光谱在溶液中以及通过 X 射线晶体学在固态中确认了结构。配合物结构影响聚合速率,对于两种单体,催化活性按以下顺序降低:C 型> B 型> A 型。总体而言,这项工作表明有可能使用这些新的配体来获得特定的配位模式,从而提高催化活性。