A new approach to enhance the performance of phthalonitrile: study of carborane curing agents with dual functions†

IF 3.2 3区 工程技术 Q2 CHEMISTRY, PHYSICAL
Zichun Ding, Lishuai Zong, Chenghao Wang, Siying Wang, RunZe Liu, Xigao Jian and Jinyan Wang
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引用次数: 0

Abstract

The current design of phthalonitrile resins has been faced with mutual constraints between heat resistance and functionality. Instead of retaining complex heat-resistant structures in the monomer to ensure thermal performance, this study proposes a new strategy to endow carborane cages with dual identities as curing sites and heat-resistant components by utilizing the σ–π double coordination properties of cyano groups. Through the NMR tracking of the soluble B-stage resin and the XPS test of the stage cured product, it is confirmed that the cyano group was bonded to the B–H bond on the carborane cage at the initial stage of curing. In the later stage of curing, carborane is evenly dispersed in the curing network during the formation of triazine and phthalocyanine rings and becomes an inorganic filler to enhance the temperature resistance of the resin system. By performing TGA on the cured product, the 5% decomposition temperature (Td5%) of the component containing the carborane curing agent was increased by 75 °C up to 582 °C under nitrogen atmosphere. The design of this new carborane curing agent with dual functions before and after curing provides a new idea for improving the comprehensive performance of the phthalonitrile resin system.

Abstract Image

提高邻苯二腈性能的新途径:双功能碳硼烷固化剂的研究
利用氰基的σ -π双配位性质赋予碳硼烷笼具有固化位和耐热组分双重身份的新策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Molecular Systems Design & Engineering
Molecular Systems Design & Engineering Engineering-Biomedical Engineering
CiteScore
6.40
自引率
2.80%
发文量
144
期刊介绍: Molecular Systems Design & Engineering provides a hub for cutting-edge research into how understanding of molecular properties, behaviour and interactions can be used to design and assemble better materials, systems, and processes to achieve specific functions. These may have applications of technological significance and help address global challenges.
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