异金属Li/Zn、Li/Al和Li/In催化剂对丙交酯开环聚合的影响:“有”或“无”途径?

IF 4.2 3区 化学 Q2 CHEMISTRY, PHYSICAL
Thitirat Piyawongsiri, Anand J Gaston, Maisarah Abdul Rahman, Jack W J Hughes, George E Rudman, Phoebe A Lowy, Gary S Nichol, Carole A Morrison, Khamphee Phomphrai, Jennifer A Garden
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引用次数: 0

摘要

丙交酯(LA)开环聚合(ROP)是一种有吸引力的生产脂肪族聚酯的途径,双金属催化剂显示出一些迄今为止最高的催化剂活性。虽然据报道,一系列异金属催化剂的性能优于同金属类似物,但人们并不总是很好地理解协同性的起源。以往的研究表明,不同的金属异质组合的反应途径可能不同,特别是当碱金属与锌或铝结合时。本文合成了一系列将Li与Al、Zn或In结合的同源和杂金属配合物,由不对称甲基酯取代的salen配体(h2l)支撑,并通过单晶x射线衍射进行了表征,以探测电位差。杂双金属lliinccl、LLiAlCl 2和LLiInCl 2配合物在环氧化物引发剂的作用下均对rac-LA ROP具有活性,其中LLiInCl 2的聚合效率最高,而均双金属LLi 2则不具有活性。通过x射线衍射和DFT结构研究对不同金属的作用进行研究表明,两种金属之间的亲氧性、刘易斯酸度和电负性差异都起了作用,其中Al的高亲氧性和刘易斯酸度压倒了“ate”途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Heterometallic Li/Zn, Li/Al and Li/In catalysts for rac-lactide ring-opening polymerisation: "ate" or "non-ate" pathways?

The ring-opening polymerisation (ROP) of lactide (LA) is an attractive route to produce aliphatic polyesters, with bimetallic catalysts displaying some of the highest catalyst activities to date. While a range of heterometallic catalysts have been reported to outperform their homometallic analogues, the origins of cooperativity are not always well understood. Previous studies indicate that the reaction pathways may differ for different metal heterocombinations, especially when an alkali metal is combined with zinc or aluminium. Here, a series of homo- and hetero-metallic complexes combining Li with Al, Zn or In, supported by an asymmetric methyl-ester substituted salen ligand (H 2 L), have been synthesised and characterised by single-crystal X-ray diffraction, to probe potential differences. The heterobimetallic LLiZnCl, LLiAlCl 2 , and LLiInCl 2 complexes were all active for rac-LA ROP in the presence of an epoxide initiator, with LLiInCl 2 offering the most efficient polymerisation while homobimetallic LLi 2 was inactive. Investigations into the roles of the different metals through X-ray diffraction and DFT structural studies suggest that oxophilicity, Lewis acidity, and electronegativity difference between the two metals all play a role, with the high oxophilicity and Lewis acidity of Al overriding the "ate" pathway.

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来源期刊
Catalysis Science & Technology
Catalysis Science & Technology CHEMISTRY, PHYSICAL-
CiteScore
8.70
自引率
6.00%
发文量
587
审稿时长
1.5 months
期刊介绍: A multidisciplinary journal focusing on cutting edge research across all fundamental science and technological aspects of catalysis. Editor-in-chief: Bert Weckhuysen Impact factor: 5.0 Time to first decision (peer reviewed only): 31 days
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