You Fen, Zhai Jingjing, So Yat-Ming, Shi Xiaochao
Department of Polymer Materials, College of Materials Science and Engineering, Shanghai University, Materials Building, Nanchen Street 333, Shanghai 200444, China.
Department of Chemistry, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, China.
Inorg Chem. 2021 Feb 1;60(3):1797-1805. doi: 10.1021/acs.inorgchem.0c03274. Epub 2021 Jan 14.
A convenient synthetic route has been developed for preparing the novel rigid 4,5-(PR)2-2,7,9,9-tetramethylacridane-based pincer ligands (PNP; R = Pr and Ph), and the first rare-earth (Ln = Y, Lu) alkyl complexes bearing the PNP ligands were synthesized by a salt metathesis reaction (for the isopropyl-substituent PNP complexes, ) or direct alkylation (for the phenyl-substituent PNP complexes, ). For both and , the NMR spectroscopy and X-ray diffraction study confirmed the successful coordination of the PNP ligand to the central metal ion in a tridentate manner via the two phosphine and the nitrogen donors. In contrast to that are solvent-free complexes, the metal centers in are each coordinated with one tetrahydrofuran molecule. Upon activation by [PhC][B(CF)], and could catalyze the living polymerization of isoprene and β-myrcene with high catalytic activity and high -1,4-selectivity (up to 92.3% for isoprene and 98.5% for β-myrcene). Moreover, the /[PhC][B(CF)] catalytic system also could promote the polymerization of butadiene and its copolymerization with isoprene to produce copolymers with high -1,4-selectivity and narrow polydispersity.
已经开发出一种便捷的合成路线来制备新型刚性4,5-(PR)2-2,7,9,9-四甲基吖啶基钳形配体(PNP;R = Pr和Ph),并且通过盐复分解反应(对于异丙基取代的PNP配合物)或直接烷基化反应(对于苯基取代的PNP配合物)合成了首个带有PNP配体的稀土(Ln = Y、Lu)烷基配合物。对于这两种配合物,核磁共振光谱和X射线衍射研究均证实了PNP配体通过两个膦和氮供体以三齿方式成功配位到中心金属离子上。与无溶剂的配合物不同,这些配合物中的金属中心各自与一个四氢呋喃分子配位。经[PhC][B(CF)]活化后,这些配合物能够以高催化活性和高1,4-选择性(异戊二烯高达92.3%,β-月桂烯高达98.5%)催化异戊二烯和β-月桂烯的活性聚合。此外,该配合物/[PhC][B(CF)]催化体系还能够促进丁二烯的聚合及其与异戊二烯的共聚反应,以制备具有高1,4-选择性和窄多分散性的共聚物。