Lee Eun-Gyeong, Tran Chinh-Hoang, Heo Ju-Yeong, Kim So-Young, Choi Ha-Kyung, Moon Byeong-Ryeol, Kim Il
School of Chemical Engineering, Pusan National University, Busandaehag-ro 63-2, Geumjeong-gu, Busan 46241, Republic of Korea.
Polymers (Basel). 2024 Mar 14;16(6):818. doi: 10.3390/polym16060818.
We developed a series of Zn(II)-Co(III) double metal cyanide (DMC) catalysts with exceptional activity for the ring-opening polymerization of various cyclic monomers by employing diverse organophosphorus compounds as complexing agents (CAs). The chemical structure and composition of DMC catalysts were investigated by commonly used analysis such as infrared and X-ray photoelectron spectroscopies, and elemental analysis combining with in situ NMR analysis to determine the complexation types of organophosphorus compounds the catalyst framework. The resulting catalysts exhibited very high turnover frequencies (up to 631.4 min) in the ring-opening polymerization (ROP) of propylene oxide and good efficiency for the ROP of ε-caprolactone. The resultant polyester polyols are suitable to use as an macroinitiator to produce well-defined poly(ester ether) triblock copolymers of 1800-6600 g mol and dispersity of 1.16-1.37. Additionally, the DMC catalysts bearing organophosphorus compounds CAs exhibited remarkable selectivity for the copolymerization of PO with CO, yielding poly(ether carbonate) polyols with carbonate contents up to 34.5%. This study contributes to the development of efficient DMC catalytic systems that enable the synthesis of high-quality polyols for various applications.
我们通过使用多种有机磷化合物作为络合剂(CAs),开发了一系列对各种环状单体的开环聚合具有优异活性的Zn(II)-Co(III)双金属氰化物(DMC)催化剂。通过常用分析方法,如红外光谱、X射线光电子能谱以及元素分析并结合原位核磁共振分析,研究了DMC催化剂的化学结构和组成,以确定有机磷化合物与催化剂骨架的络合类型。所得催化剂在环氧丙烷的开环聚合(ROP)中表现出非常高的周转频率(高达631.4 min⁻¹),并且对ε-己内酯的ROP具有良好的效率。所得的聚酯多元醇适合用作大分子引发剂,以制备分子量为1800 - 6600 g/mol且分散度为1.16 - 1.37的结构明确的聚(酯醚)三嵌段共聚物。此外,带有有机磷化合物CAs的DMC催化剂在PO与CO的共聚反应中表现出显著的选择性,生成碳酸酯含量高达34.5%的聚(醚碳酸酯)多元醇。这项研究有助于开发高效的DMC催化体系,从而能够合成用于各种应用的高质量多元醇。