Xia Wei, Salmeia Khalifah A, Vagin Sergei I, Rieger Bernhard
WACKER Lehrstuhl für Makromolekulare Chemie, Technische Universität München, Lichtenbergstraße 4, 85747 Garching bei München (Germany).
Chemistry. 2015 Mar 9;21(11):4384-90. doi: 10.1002/chem.201406258. Epub 2015 Feb 5.
Functioning as active catalysts for propylene oxide (PO) and carbon dioxide copolymerization, cobalt(III)-based salen and porphyrin complexes have drawn great attention owing to their readily modifiable nature and promising catalytic behavior, such as high selectivity for the copolymer formation and good regioselectivity with respect to the polymer microstructure. Both cobalt(III)-salen and porphyrin catalysts have been found to undergo reduction reactions to their corresponding catalytically inactive cobalt(II) species in the presence of propylene oxide, as evidenced by UV/Vis and NMR spectroscopies and X-ray crystallography (for cobalt(II)-salen). Further investigations on a TPPCoCl (TPP = tetraphenylporphyrin) and NaOMe system reveal that such a catalyst reduction is attributed to the presence of alkoxide anions. Kinetic studies of the redox reaction of TPPCoCl with NaOMe suggests a pseudo-first order in cobalt(III)-porphyrin. The addition of a co-catalyst, namely bis(triphenylphosphine)iminium chloride (PPNCl), into the reaction system of cobalt(III)-salen/porphyrin and PO shows no direct stabilizing effect. However, the results of PO/CO2 copolymerization by cobalt(III)-salen/porphyrin with PPNCl suggest a suppressed catalyst reduction. This phenomenon is explained by a rapid transformation of the alkoxide into the carbonate chain end in the course of the polymer formation, greatly shortening the lifetime of the autoreducible PO-ring-opening intermediates, cobalt(III)-salen/porphyrin alkoxides.
作为环氧丙烷(PO)和二氧化碳共聚反应的活性催化剂,钴(III)基席夫碱和卟啉配合物因其易于修饰的特性和良好的催化性能而备受关注,例如对共聚物形成具有高选择性以及对聚合物微观结构具有良好的区域选择性。通过紫外可见光谱、核磁共振光谱以及X射线晶体学(针对钴(II)-席夫碱)证明,在环氧丙烷存在的情况下,钴(III)-席夫碱和卟啉催化剂都会发生还原反应,生成相应的催化惰性钴(II)物种。对四苯基卟啉氯化钴(TPPCoCl,TPP = 四苯基卟啉)和甲醇钠体系的进一步研究表明,这种催化剂还原归因于醇盐阴离子的存在。TPPCoCl与甲醇钠氧化还原反应的动力学研究表明,该反应对钴(III)-卟啉为假一级反应。向钴(III)-席夫碱/卟啉与PO的反应体系中添加助催化剂双(三苯基膦)亚胺氯化物(PPNCl),未显示出直接的稳定作用。然而,钴(III)-席夫碱/卟啉与PPNCl进行PO/CO2共聚反应的结果表明,催化剂还原受到了抑制。这种现象可以解释为在聚合物形成过程中醇盐迅速转化为碳酸酯链端,大大缩短了可自动还原的PO开环中间体钴(III)-席夫碱/卟啉醇盐的寿命。