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首页> 外文期刊>Macromolecules >One-Pot Tandem Ring-Opening and Ring-Closing Metathesis Polymerization of Disubstituted Cyclopentenes Featuring a Terminal Alkyne Functionality
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One-Pot Tandem Ring-Opening and Ring-Closing Metathesis Polymerization of Disubstituted Cyclopentenes Featuring a Terminal Alkyne Functionality

机译:二取代环戊烯酮的单壶串联开环和闭合复分解聚合,具有终端炔烃功能

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Tandem metathesis polymerization of terminal alkynes with a small functional ring-size cycloalkene remains a challenge. A series of 1-propargyl-1'-carboxylate ester monomers M1-M4 derived from 3-cyclopentene initiated by ruthenium-alkylidene complexes have been investigated via tandem polymerization. Detailed DFT calculations and endgroup analysis using H-1 NMR experiments provided us with a deeper insight into the proposed polymerization mechanism. The energy profile obtained from DFT analysis provides two pathways for the polymerization of monomers having both cycloalkene and alkyne functionalities. The most stable coordination of M was found to be via a pi-coordination to the triple bond, which is oriented perpendicularly to the ruthenium-alkylidene bond. Both cycloalkene- and alkyne-initiated polymerizations were found to be feasible pathways. However, the alkyne-initiated polymerization mechanism was found to be the preferred pathway due to the higher stability of the alkyne coordination to the monomer and the slightly lower rate-determining step barrier. In addition, the synthesis of the model MC compound supported our proposed polymerization mechanism as well as the position of the styrene end-group on the polymer chain.
机译:具有小功能环形尺寸环烷烃的末端醇酸末端的串联复分解聚合仍然是一个挑战。通过串联聚合研究了一系列由钌 - 烷基复合物引发的3-环戊烯的1-炔丙基-1'-羧酸酯单体M1-M4。使用H-1 NMR实验进行详细的DFT计算和终组分析,为我们提供了更深入的洞察所提出的聚合机制。从DFT分析获得的能量曲线提供了两种途径,用于具有环烯烃和炔烃官能团的单体的聚合。发现M的最稳定的配位通过对三键的PI-协调,其垂直于钌 - 烷基键垂直定向。克服环烯和炔烃引发的聚合均被发现是可行的途径。然而,由于炔烃与单体的稳定性较高,发现炔烃引发的聚合机制是优选的途径,以及略低于速率确定步骤屏障。此外,模型MC化合物的合成支持我们所提出的聚合机制以及聚合物链上的苯乙烯端基的位置。

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