邻苯二甲腈
热稳定性
单体
聚合物
材料科学
组合化学
固化(化学)
可扩展性
纳米技术
计算机科学
化学
高分子化学
有机化学
复合材料
数据库
酞菁
作者
Roman M. Kurganov,Oleh V. Svaliavyn,E. A. Pashchenko,Denys Savchenko,Alexander B. Rozhenko,Sergey V. Ryabukhin,Dmitriy M. Volochnyuk
标识
DOI:10.24959/ophcj.24.317091
摘要
Developing efficient and scalable synthetic protocols for key polymer precursors is crucial to advancing high-performance materials designed to withstand severe thermal environments. In this article, we report on the development of solid, high-yield methods for preparing structurally diverse building blocks, including s-triazine derivatives, phenyl-borosilane alkynyl oligomers, phthalonitrile-based monomers, and novel diamine curing agents on multi-gram to multi-hundred-gram scales. These carefully optimized procedures use readily available starting materials, mild conditions, and well-known synthetic transformations, thus addressing the longstanding challenges associated with their practical upscaling. The resulting library of monomers and oligomers offers a broad range of reactive functional groups (e.g., nitriles, alkynes, borosilane motifs), enabling future combinatorial-like strategies for the formation of advanced co-polymers with enhanced thermal stability, mechanical strength, and tunable properties suitable for high-temperature applications.
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