首页> 外文会议>Electronic Components and Technology Conference, 1991. Proceedings., 41st >Polyamic alkyl esters: versatile polyimide precursors for improved dielectric coatings
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Polyamic alkyl esters: versatile polyimide precursors for improved dielectric coatings

机译:聚酰胺烷基酯:通用聚酰亚胺前体,用于改善介电涂层

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摘要

Several approaches leading to high-solids-content polyimide precursor formulations and polyimides with multiphase morphologies have been successfully explored. These approaches were made possible by utilizing poly(amic alkyl esters), which are soluble polyimide precursors devoid of hydrolytic instability and which can be designed to imidize at significantly higher temperatures than their poly(amic acid) counterparts. The hydrolytic stability of these derivatives provides great synthetic flexibility due to solubility considerations, polymer work-up procedures, and polymer modification schemes. The synthetic flexibility is complemented by higher imidization temperatures, which provide the necessary processing window to permit the use of a condensation-chemistry-based, linear chain-extension scheme. In addition, higher imidization temperatures may further advantageously influence the development of well-defined microphase-separated morphologies in the case of block copolymers and polyimide blends.
机译:已经成功地探索了导致高固含量聚酰亚胺前体配方和具有多相形态的聚酰亚胺的几种方法。通过利用聚(酰胺烷基酯)使这些方法成为可能,所述聚(酰胺烷基酯)是没有水解不稳定性的可溶性聚酰亚胺前体,并且可以设计成在比其聚(酰胺酸)对应物高得多的温度下酰亚胺化。由于考虑到溶解性,聚合物后处理程序和聚合物改性方案,这些衍生物的水解稳定性提供了很大的合成灵活性。较高的酰亚胺化温度为合成的灵活性提供了补充,后者提供了必要的加工窗口,以允许使用基于缩合化学的线性链扩展方案。另外,在嵌段共聚物和聚酰亚胺共混物的情况下,较高的酰亚胺化温度可进一步有利地影响明确定义的微相分离形态的发展。

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