Cross-Linkable Spirobisindane-Based Polyimides with Enhanced Low-Dielectric Properties for High-Frequency Applications

Abstract Cross-linkable spirobisindane-based polyimides were synthesized and investigated as low-dielectric materials for high-frequency applications. The polymer composition was controlled by varying the molar ratio of diamines, and allyl groups were introduced through postpolymerization functionalization to enable subsequent thermal cross-linking. The successful introduction and cross-linking of the allyl groups were confirmed by 1H NMR and FT-IR spectroscopy, together with gel fraction measurements. The resulting films were readily fabricated by solution-based bar coating and exhibited enhanced hydrophobicity and thermal stability after cross-linking. Positron annihilation lifetime spectroscopy (PALS) revealed a composition-dependent reorganization of the local free-volume structure upon cross-linking, rather than a uniform increase in free volume. In particular, the 55 series exhibited a pronounced decrease in fractional free volume after cross-linking, whereas the 73 series showed relatively minor changes. Despite these different free-volume responses, the cross-linked X-BMDA films exhibited improved dielectric properties compared with their uncross-linked counterparts, indicating that the dielectric enhancement cannot be attributed solely to an increase in free volume. X-BMDA-55 exhibited the lowest dielectric constant (Dk = 2.20 at 28 GHz) and dissipation factor (Df = 0.0063 at 10 GHz). These results demonstrate that the combination of spirobisindane-based molecular design and post-cross-linking provides an effective strategy for controlling local molecular structure and achieving low dielectric properties in polyimide films.

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Publication Details

Journal
ACS Applied Polymer Materials
Published
2026-09-29
DOI
https://doi.org/10.1021/acsapm.6c02331
Primary Topic
Synthesis and properties of polymers
Type
article
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article

Cross-Linkable Spirobisindane-Based Polyimides with Enhanced Low-Dielectric Properties for High-Frequency Applications

Seonyoung Jo, Jaegi Lee, No Kyun Park, Yun Ho Kim et al.
ACS Applied Polymer Materials
Synthesis and properties of polymers
article

Cross-Linkable Spirobisindane-Based Polyimides with Enhanced Low-Dielectric Properties for High-Frequency Applications

Seonyoung Jo, Jaegi Lee, No Kyun Park, Yun Ho Kim, Jong Chan Won, Youngsu Jeong, Seong Hun Choi, Eun Ae Chu, Min Ki Choi, Chaeyeon Park
article en

Abstract

Abstract Cross-linkable spirobisindane-based polyimides were synthesized and investigated as low-dielectric materials for high-frequency applications. The polymer composition was controlled by varying the molar ratio of diamines, and allyl groups were introduced through postpolymerization functionalization to enable subsequent thermal cross-linking. The successful introduction and cross-linking of the allyl groups were confirmed by 1H NMR and FT-IR spectroscopy, together with gel fraction measurements. The resulting films were readily fabricated by solution-based bar coating and exhibited enhanced hydrophobicity and thermal stability after cross-linking. Positron annihilation lifetime spectroscopy (PALS) revealed a composition-dependent reorganization of the local free-volume structure upon cross-linking, rather than a uniform increase in free volume. In particular, the 55 series exhibited a pronounced decrease in fractional free volume after cross-linking, whereas the 73 series showed relatively minor changes. Despite these different free-volume responses, the cross-linked X-BMDA films exhibited improved dielectric properties compared with their uncross-linked counterparts, indicating that the dielectric enhancement cannot be attributed solely to an increase in free volume. X-BMDA-55 exhibited the lowest dielectric constant (Dk = 2.20 at 28 GHz) and dissipation factor (Df = 0.0063 at 10 GHz). These results demonstrate that the combination of spirobisindane-based molecular design and post-cross-linking provides an effective strategy for controlling local molecular structure and achieving low dielectric properties in polyimide films.

ACS Applied Polymer Materials
Korea Atomic Energy Research Institute (KR), Korea Research Institute of Chemical Technology (KR), National Forensic Institute (KR), Hanyang University (KR)
Openalex Percentile: Top 24%
Synthesis and properties of polymers
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