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Protection of graphene supported ROMP catalyst through polymeric globular shell in self-healing materials

机译:通过自修复材料中的聚合物球壳保护石墨烯负载的ROMP催化剂

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摘要

Protected Ru-catalyst, immobilized on graphene sheets, was prepared and used for Ring Opening Metathesis Polymerization (ROMP) in strongly reactive environments based on epoxy resins. The protection mechanism, proposed in this paper, is based on the formation of a micrometric globular shell that partially englobed the catalytic site, causing hindrances for the deactivation of the catalyst due to an equimolecular reaction between the catalyst complex and the oxirane ring. The catalytic performance evaluated in reactive self-healing systems showed the overcoming of several critical drawbacks. The proposed system allows curing temperatures typical of structural materials and, in addition to preventing the agglomeration of the catalyst particles, a remarkable reduction from 5% to 0.3% by wt of expensive catalyst in the self-healing composite material. (C) 2016 Elsevier Ltd. All rights reserved.
机译:制备了固定在石墨烯片材上的受保护的Ru催化剂,并将其用于基于环氧树脂的强反应性环境中的开环复分解聚合(ROMP)。本文提出的保护机理是基于形成微米级球形壳的,该球形壳部分地包围了催化位点,由于催化剂配合物与环氧乙烷环之间的等分子反应,导致了催化剂失活的障碍。在反应性自愈系统中评估的催化性能显示出克服了几个关键缺点。所提出的系统允许典型的结构材料的固化温度,并且除了防止催化剂颗粒的团聚之外,还使自修复复合材料中昂贵的催化剂的重量百分比从5%显着降低到0.3%。 (C)2016 Elsevier Ltd.保留所有权利。

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