Mechanistic insights on Zn(II)-Co(III) double metal cyanide-catalyzed ring-opening polymerization of epoxides

被引:62
作者
Chinh Hoang Tran [1 ]
Linh Thi Thuy Pham [1 ]
Lee, Yechan [1 ]
Jang, Han Byeol [1 ]
Kim, Suna [1 ]
Kim, Il [1 ]
机构
[1] Pusan Natl Univ, Dept Polymer Sci & Engn, BK21 PLUS Ctr Adv Chem Technol, Busan 609735, South Korea
基金
新加坡国家研究基金会;
关键词
Double metal cyanide; Epoxides; Heterogeneous catalysis; Polyols; Ring-opening polymerization; KETO-ENOL-TAUTOMERISM; SOLID ACID CATALYSTS; PROPYLENE-OXIDE; HETEROGENEOUS CATALYSTS; CYCLOHEXENE OXIDE; CARBON-DIOXIDE; ACTIVE-SITES; FATTY-ACIDS; COPOLYMERIZATION; FRAGMENTATION;
D O I
10.1016/j.jcat.2019.02.028
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Electron donating complexing agents (CAs) are one of the key components to achieve active Zn(II)-Co(III) double metal cyanide (DMC) catalysts for the ring-opening polymerization (ROP) of propylene oxide (PO). The effect of the type of CAs on the ROP of PO is mechanistically studied by exploiting a series of dicarbonyl compounds, alpha-, beta-, and gamma-diketones and B-ketoesters, as CAs for DMC catalysts. The keto and/or enol modes of complexation of CAs on the catalyst surface is defined by combining structure-sensitive characterization tools such as infrared, absorption and X-ray photoelectron spectroscopies, finding keto complexation exhibits higher activity than enol complexation. Polymerizations of 1,2-epoxyhexane, glycidyl isopropyl ether, epichlorohydrin, and 1,2-epoxytetradecane are also conducted to get further insights on the mechanistic pathways of DMC-catalyzed ROP of epoxides. The interaction of oxygen atoms from both CAs and PO with the dormant sites during the activation of catalyst and the consequent formation of active sites by the removal of the coordinated CAs has been investigated using H-1 NMR analysis combined with DFT calculations. Once the active sites are initiated in cationic pathway and started to propagate, the DMC catalysts are fragmented into small pieces, allowing the unexpected high activity of the DMC catalysts. The propagation proceeds in either cationic or coordinative route depending on the presence of polyol initiator. The further understanding of the mechanistic pathways using a series of new dicarbonyl CAs expands the variety and scope of DMC-catalyzed ROP of epoxides. (C) 2019 Elsevier Inc. All rights reserved.
引用
收藏
页码:86 / 102
页数:17
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