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用于丙交酯可控活性聚合的两性离子金属铵三(酚盐)配合物的多样性:显著的活性增强及超越锆的扩展机理研究

Diversity in Zwitterionic Metal Ammonium Tris(phenolate)s for the Controlled Immortal Polymerization of Lactide: Dramatic Activity Enhancement and Mechanistic Insight on Expansion beyond Zirconium.

作者信息

Davidson Matthew G, Frankis Catherine J, Jones Matthew D, Kociok-Köhn Gabriele, Marken Frank, McCormick Strachan N, Tipler James, Yang Philip B

机构信息

Institute of Sustainability and Climate Change, University of Bath, Bath BA2 7AY, U.K.

Department of Chemistry, University of Bath, Bath BA2 7AY, U.K.

出版信息

ACS Catal. 2025 May 14;15(11):9130-9149. doi: 10.1021/acscatal.5c01857. eCollection 2025 Jun 6.

Abstract

Reaction of tris-(2,4-dimethylbenzyl)-amine, HL, with tris- or tetrakis-(alkoxide)-s of large metals consistently affords, respectively, -homoleptic and homoleptic zwitterionic compounds [M-(III)-(HL)-(HL)] (M = Yb-(III), Y-(III), Pr-(III), La-(III), Sc-(III), Sm-(III)) and [M-(IV)-(HL)] (M = Zr-(IV), Hf-(IV), Ce-(IV)). The Zr-(IV) congener is known to be a robust and efficient catalyst for the ring-opening polymerization of lactides under industrially relevant solvent-free conditions, exhibiting some heteroselectivity in the polymerization of the racemic monomer. The generality of the synthetic route, encompassing various metals, permits exploration of the role of metal center size and other subtle structural variations in influencing catalytic activity and selectivity. Kinetic studies have revealed all M-(III) compounds assessed (M = Yb-(III), Y-(III), Pr-(III), La-(III)) to be significantly more active than the Zr-(IV) system, exhibiting a clear correlation between ionic radius and reaction rate, while generally retaining a high degree of control. The La-(III) compound, in particular, offers both remarkable activity (>20 × Zr-(IV) at 120 °C, 50 wt %/vol monomer in PhCl) and resilience under challenging, industrially relevant conditions (180 °C, solvent-free, 2×10-5×10 mol % catalyst). Comprehensive structural analyses have, additionally, afforded insight into the unusual mechanism favored by these catalysts. Although only the Zr-(IV) and Hf-(IV) systems exhibit appreciable stereoselectivity, variable-temperature H NMR spectroscopic and crystallographic methods have illuminated trends regarding the conformational chirality of the ligand systems in the compounds of interest, the facility of inversion of which we propose underpins much of the variation in their catalytic properties. Additionally, whereas the Ce-(IV) system, despite its greater metal size, did not tend to outperform Zr-(IV), in situ reduction to the anionic [Ce-(III)-(HL)] provided an activity enhancement assessed to exceed 2 orders of magnitude. Accordingly, Ce-(III) offers a similarly dramatic rate enhancement when benchmarked against Zr-(IV).

摘要

三(2,4 - 二甲基苄基)胺(HL)与大金属的三(醇盐)或四(醇盐)反应,分别持续生成 - 同配型和同配型两性离子化合物[M-(III)-(HL)-(HL)](M = Yb-(III)、Y-(III)、Pr-(III)、La-(III)、Sc-(III)、Sm-(III))和[M-(IV)-(HL)](M = Zr-(IV)、Hf-(IV)、Ce-(IV))。已知Zr-(IV)同系物是一种在工业相关无溶剂条件下用于丙交酯开环聚合的强大且高效的催化剂,在消旋单体的聚合中表现出一定的异选择性。涵盖各种金属的合成路线的通用性允许探索金属中心尺寸和其他细微结构变化在影响催化活性和选择性方面的作用。动力学研究表明,所有评估的M-(III)化合物(M = Yb-(III)、Y-(III)、Pr-(III)、La-(III))比Zr-(IV)体系活性显著更高,在离子半径和反应速率之间呈现明显的相关性,同时通常保持高度的可控性。特别是La-(III)化合物,在具有挑战性的工业相关条件下(180°C,无溶剂,2×10 - 5×10 mol%催化剂),既表现出显著的活性(在120°C、PhCl中50 wt%/vol单体时>20×Zr-(IV))又具有稳定性。此外,全面的结构分析深入了解了这些催化剂所青睐的异常机理。尽管只有Zr-(IV)和Hf-(IV)体系表现出明显的立体选择性,但变温1H NMR光谱和晶体学方法揭示了感兴趣化合物中配体体系构象手性的趋势,我们认为其反转的难易程度是其催化性能诸多变化的基础。此外,尽管Ce-(IV)体系金属尺寸更大,但它并没有表现出优于Zr-(IV)的趋势,原位还原为阴离子型[Ce-(III)-(HL)]后活性提高了超过2个数量级。因此,与Zr-(IV)相比,Ce-(III)也表现出类似的显著速率提升。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ebc0/12150268/6bb87efc1935/cs5c01857_0010.jpg

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