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探索锌(II)配合物催化环酯和环碳酸酯聚合反应中氧化态依赖性选择性。

Exploring Oxidation State-Dependent Selectivity in Polymerization of Cyclic Esters and Carbonates with Zinc(II) Complexes.

作者信息

Abubekerov Mark, Vlček Vojtěch, Wei Junnian, Miehlich Matthias E, Quan Stephanie M, Meyer Karsten, Neuhauser Daniel, Diaconescu Paula L

机构信息

Department of Chemistry and Biochemistry, University of California, Los Angeles, CA 90095, USA.

Inorganic Chemistry, Department of Chemistry and Pharmacy, Friedrich-Alexander-University Erlangen-Nürnberg (FAU), Erlangen 91058, Germany.

出版信息

iScience. 2018 Sep 28;7:120-131. doi: 10.1016/j.isci.2018.08.020. Epub 2018 Aug 30.

Abstract

Neutral zinc alkoxide complexes show high activity toward the ring-opening polymerization of cyclic esters and carbonates, to generate biodegradable plastics applicable in several areas. Herein, we use a ferrocene-chelating heteroscorpionate complex in redox-switchable polymerization reactions, and we show that it is a moderately active catalyst for the ring-opening polymerization of L-lactide, ɛ-caprolactone, trimethylene carbonate, and δ-valerolactone. Uniquely for this type of catalyst, the oxidized complex has a similar polymerization activity as the corresponding reduced compound, but displays significantly different rates of reaction in the case of trimethylene carbonate and δ-valerolactone. Investigations of the oxidized compound suggest the presence of an organic radical rather than an Fe(III) complex. Electronic structure and density functional theory (DFT) calculations were performed to support the proposed electronic states of the catalytic complex and to help explain the observed reactivity differences. The catalyst was also compared with a monomeric phenoxide complex to show the influence of the phosphine-zinc interaction on catalytic properties.

摘要

中性醇锌配合物对环状酯和碳酸酯的开环聚合反应表现出高活性,可生成适用于多个领域的可生物降解塑料。在此,我们在氧化还原可切换聚合反应中使用了一种二茂铁螯合异蝎型配合物,并且我们表明它是L-丙交酯、ε-己内酯、碳酸三亚甲酯和δ-戊内酯开环聚合反应的中等活性催化剂。对于这类催化剂而言独特的是,氧化态配合物具有与相应还原态化合物相似的聚合活性,但在碳酸三亚甲酯和δ-戊内酯的情况下显示出显著不同的反应速率。对氧化态化合物的研究表明存在有机自由基而非Fe(III)配合物。进行了电子结构和密度泛函理论(DFT)计算,以支持所提出的催化配合物的电子态,并有助于解释观察到的反应活性差异。还将该催化剂与单体酚盐配合物进行了比较,以显示膦 - 锌相互作用对催化性能的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2fb0/6153418/e87149be7179/fx1.jpg

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