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首页> 外文期刊>Macromolecular Research >Synthesis,Characterization,and Properties of Fully Aliphatic Polyimides and Their Derivatives for Microelectronics and Optoelectronics Applications
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Synthesis,Characterization,and Properties of Fully Aliphatic Polyimides and Their Derivatives for Microelectronics and Optoelectronics Applications

机译:微电子和光电子应用中全脂族聚酰亚胺及其衍生物的合成,表征和性质

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摘要

Polyimides are one of the most important classes of polymers used in the microelectronics and photoelec-tronics industries.Because of their high thermal stability,chemical resistance,and good mechanical and electric properties,polyimides are often applied in photoresists,passivation and dielectric films,soft print circuit boards,and alignment films within displays.Recently,fully aliphatic and alicyclic polyimides have found applications as optoelectronics and inter layer dielectric materials,due to their good transparencies and low dielectric constants (s).The low molecular density,polarity and rare probability of forming inter-or intra-molecular charge transfers,resulting in lowering of the dielectric constant and high transparency,are the most striking characteristics of aliphatic poly-imide.However,the ultimate end use of polyimides derived from aliphatic monomers is in their targeted applications that need less stringent thermal requirements.Much research effort has been exerted in the development of aliphatic polyimide with increased thermal and mechanical stabilities,while maintaining their transparencies and low dielectric constants,by the incorporation of rigid moieties.In this article,the recent research process in synthesizing fully aliphatic polyimides,with improved dimensional stability,high transparency and low epsilon values,as well as the characterizations and future scope for their application in micro electric and photo-electronic industries,is reviewed.
机译:聚酰亚胺是微电子和光电行业中最重要的聚合物类别之一。由于其高的热稳定性,耐化学性以及良好的机械和电性能,聚酰亚胺通常用于光致抗蚀剂,钝化和介电膜中,柔软近年来,由于脂肪族和脂环族聚酰亚胺具有良好的透明性和低介电常数,它们已被广泛用作光电子和层间介电材料。低分子密度,极性和极少的可能性分子间或分子内电荷转移的形成,导致介电常数降低和高透明性是脂族聚酰亚胺的最显着特征。然而,衍生自脂族单体的聚酰亚胺的最终用途是其目标应用需要较少严格的热要求的技术。通过结合刚性部分,开发具有更高的热稳定性和机械稳定性,同时又保持其透明性和低介电常数的脂肪族聚酰亚胺。本文是一种合成全脂肪族聚酰亚胺的最新研究方法,具有改善的尺寸稳定性,高透明度和审查了低ε值,以及它们在微电子和光电工业中的应用特性和未来范围。

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