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Bis-amino Functionalized Iron N-heterocyclic Carbene as Epoxy Resins Hardener and Flame Behaviour Modifier

机译:双氨基官能化铁N-杂环卡贝作为环氧树脂硬化剂和火焰行为改性剂

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The synthesis of a bis-amino-functionalized iron cyclopentadienone N-heterocyclic carbene complex (1) has been fine tuned to develop an hardener for the production of a novel hybrid epoxy resin (EP) with the aim of also reducing fire hazard. The synthesized organometallic complex well performs as curing agent both with DGEBA, preliminary employed, and the commercial pre-polymer Elan-tron? EC 157 in different formulations (loading range 5, 7.5, 10%wt). Thermogravimetric analyses revealed that curing temperature shows a significant intumescent char residual (yield 25%), possibly to due iron presence. DSC indicated that reaction rate and glass transition increase with complex 1 content, and under isothermal conditions the best performances have been identified at 170~oC and 7.5%wt of 1. The latter conditions has been finally employed for tests in cone calorimeter displaying a charring action of the complex included in the resins, together with an early ignition that has to be addressed playing on the formulation and chemical structure of the hardener.
机译:双氨基官能化铁链烯酮二烯酮N-杂环碳烯复合物(1)的合成已经进行了微调,以开发用于生产新型杂交环氧树脂(EP)的硬化剂,其目的还降低了火灾危害。合成的有机金属复合物井是用DGEBA,初步使用的固化剂和商业预聚物Elan-Tron? EC 157在不同的配方中(装载范围5,7.5,10%wt)。热重分析显示,固化温度显示出显着的膨胀型炭残余(产率25%),可能是由于铁的存在。 DSC表明,反应速率和玻璃化转变随复合物1含量的增加,并且在等温条件下,已经在170〜OC和7.5%WT中鉴定了最佳性能。后一种条件最终用于锥形量热计的测试呈现出炭化的试验复合物中包含在树脂中的作用,以及必须解决在硬化剂的配方和化学结构上扮演的早期点火。

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