通过具有空间和电子参数的精确调谐双(亚胺)吡啶基钴预催化剂在乙烯聚合中获得线性α-大烯烃

Kainat Fatima Tahir, Yanping Ma*, Qaiser Mahmood*, Geng Ren, Areej Khalid, Yizhou Wang, Song Zou, Tongling Liang and Wen-Hua Sun*, 
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引用次数: 0

摘要

仅从乙烯合成功能聚乙烯是非常棘手的,并且在很大程度上取决于预催化剂的类型和结构以及聚合中使用的助催化剂的选择。本研究制备了一系列钴预催化剂,并对其在不同条件下的乙烯聚合进行了研究。通过在母体双(亚)吡啶配体中加入强吸电子基团(F和NO2)和立体组分(苯并羟基),优化了这些预催化剂的催化性能。在MAO或MMAO的活化下,这些具有相对开放结构的预催化剂在60°C(高达27.6 × 106 g mol-1 h-1)下实现了前所未有的乙烯聚合速率,并且在高达100°C的温度下保持有效。链生长反应温和,聚乙烯分子量可达61.0 kg/mol,双峰分散指数较宽。高结晶度和高熔体温度表明了严格的线性微观结构,高温1H/13C核磁共振进一步证实了这一点。值得注意的是,链终止主要通过β消除(高达84.5%)发生,生成端乙烯基长链烯烃。这些功能化α-巨烯烃作为后功能化前体具有重要价值,扩大了聚乙烯在各个领域的潜在应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Achieving Linear α-Macro-olefins in Ethylene Polymerization through Precisely Tuned Bis(imino)pyridylcobalt Precatalysts with Steric and Electronic Parameters

Synthesis of functional polyethylene from ethylene alone is tricky and heavily dependent on both the type and structure of the precatalyst and the choice of cocatalyst used in the polymerization. In the present study, a series of cobalt precatalysts was prepared and investigated for ethylene polymerization under various conditions. By incorporation of strong electron-withdrawing groups (F and NO2) and a steric component (benzhydryl) into the parent bis(imino)pyridine ligand, the catalytic performance of these precatalysts was optimized. On activation with MAO or MMAO, these precatalysts with relatively open structure achieved unprecedented ethylene polymerization rates at 60 °C (up to 27.6 × 106 g mol–1 h–1) and remained effective at temperatures up to 100 °C. Chain growth reactions were moderate, resulting in polyethylene with molecular weights up to 61.0 kg/mol and broad bimodal dispersity index. High crystallinity and melt temperature indicated a strictly linear microstructure, as further confirmed by high-temperature 1H/13C NMR measurements. Of significant note that chain termination predominantly occurred through β-elimination (up to 84.5%), yielding vinyl-terminated long-chain olefins. These functional α-macro-olefins are valuable as precursors for postfunctionalization, expanding the potential applications of polyethylene across various sectors.

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来源期刊
Precision Chemistry
Precision Chemistry 精密化学技术-
CiteScore
0.80
自引率
0.00%
发文量
0
期刊介绍: Chemical research focused on precision enables more controllable predictable and accurate outcomes which in turn drive innovation in measurement science sustainable materials information materials personalized medicines energy environmental science and countless other fields requiring chemical insights.Precision Chemistry provides a unique and highly focused publishing venue for fundamental applied and interdisciplinary research aiming to achieve precision calculation design synthesis manipulation measurement and manufacturing. It is committed to bringing together researchers from across the chemical sciences and the related scientific areas to showcase original research and critical reviews of exceptional quality significance and interest to the broad chemistry and scientific community.
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