Wang Chunxiang, Luo Gen, Nishiura Masayoshi, Song Guoyong, Yamamoto Atsushi, Luo Yi, Hou Zhaomin
Center for Sustainable Resource Science and Organometallic Chemistry Laboratory, RIKEN, 2-1 Hirosawa, Wako, Saitama 351-0198, Japan.
State Key Laboratory of Fine Chemicals, School of Chemical Engineering, Dalian University of Technology, Dalian 116024, China.
Sci Adv. 2017 Jul 21;3(7):e1701011. doi: 10.1126/sciadv.1701011. eCollection 2017 Jul.
Heteroatom-functionalized polyolefins are of fundamental interest and practical importance. This has spurred investigations of the copolymerization of polar and nonpolar olefins. We report the first syndiospecific polymerization of a series of heteroatom-containing α-olefins and their copolymerization with ethylene catalyzed by half-sandwich rare-earth complexes. We have found that the interaction between a heteroatom in a functional α-olefin monomer and a rare-earth metal catalyst can significantly raise the olefin polymerization activity and thereby promote its copolymerization with ethylene. By using this heteroatom-assisted olefin polymerization (HOP) strategy, we have successfully synthesized a series of heteroatom (O, S, Se, N, and P)-functionalized polyolefins with high molecular weights and controllable functional monomer contents. The mechanistic aspect of the HOP process has been elucidated by computational studies. We expect that our findings will guide the design of new catalyst systems for the synthesis of various desired functional polyolefins.
杂原子功能化聚烯烃具有重要的基础研究意义和实际应用价值。这激发了人们对极性和非极性烯烃共聚反应的研究。我们报道了一系列含杂原子的α-烯烃的首次间同立构聚合反应,以及它们与乙烯在半夹心稀土配合物催化下的共聚反应。我们发现,官能化α-烯烃单体中的杂原子与稀土金属催化剂之间的相互作用能够显著提高烯烃聚合活性,从而促进其与乙烯的共聚反应。通过使用这种杂原子辅助烯烃聚合(HOP)策略,我们成功合成了一系列具有高分子量和可控功能单体含量的杂原子(O、S、Se、N和P)功能化聚烯烃。HOP过程的机理已通过计算研究得以阐明。我们期望我们的研究结果将指导用于合成各种所需功能聚烯烃的新型催化剂体系的设计。