Enhanced mechanical and electrical performance of Ti/Au microelectrode arrays using a pre-cured polyimide substrate

This paper presents an approach for fabricating flexible neural electrodes with improved adhesion and low impedance through optimization of the PSPI curing process. The fabrication involves a two-step process in which thin-film metallization is performed on a partially cured photosensitive polyimide (PSPI) substrate, followed by a final curing process after metal electrode patterning. The effects of the PSPI curing condition on the adhesion and electrical characteristics of the Ti/Au thin-film electrodes were systematically investigated. The enhanced metal adhesion was quantitatively evaluated using a tape test, while the electrical characteristics were characterized through electrochemical impedance and phase measurements after complete curing of the polymer substrate. The flexible neural electrodes fabricated using the proposed process exhibited an impedance of 9.96 kΩ at 1 kHz, compared with 36.24 kΩ for electrodes fabricated using the conventional fully cured PSPI process. These results demonstrate that controlling the PSPI curing condition during electrode fabrication can improve metal–polymer adhesion while maintaining favorable electrical characteristics.

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Publication Details

Journal
Micro and Nano Systems Letters
Published
2026-10-03
DOI
https://doi.org/10.1186/s40486-026-00266-4
Primary Topic
Neuroscience and Neural Engineering
Type
article
Field-Weighted Citation Impact
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article

Enhanced mechanical and electrical performance of Ti/Au microelectrode arrays using a pre-cured polyimide substrate

박형달, Wonsuk Choi, 오성환, Seonho Seok et al.
Micro and Nano Systems Letters
Neuroscience and Neural Engineering
article

Enhanced mechanical and electrical performance of Ti/Au microelectrode arrays using a pre-cured polyimide substrate

박형달, Wonsuk Choi, 오성환, Seonho Seok, Jinseok Kim, Byeungleul Lee
article en

Abstract

This paper presents an approach for fabricating flexible neural electrodes with improved adhesion and low impedance through optimization of the PSPI curing process. The fabrication involves a two-step process in which thin-film metallization is performed on a partially cured photosensitive polyimide (PSPI) substrate, followed by a final curing process after metal electrode patterning. The effects of the PSPI curing condition on the adhesion and electrical characteristics of the Ti/Au thin-film electrodes were systematically investigated. The enhanced metal adhesion was quantitatively evaluated using a tape test, while the electrical characteristics were characterized through electrochemical impedance and phase measurements after complete curing of the polymer substrate. The flexible neural electrodes fabricated using the proposed process exhibited an impedance of 9.96 kΩ at 1 kHz, compared with 36.24 kΩ for electrodes fabricated using the conventional fully cured PSPI process. These results demonstrate that controlling the PSPI curing condition during electrode fabrication can improve metal–polymer adhesion while maintaining favorable electrical characteristics.

Micro and Nano Systems LettersVol. 14(1)
Centre National de la Recherche Scientifique (FR), Université Paris-Saclay (FR), Korea University of Technology and Education (KR), Centre Inria de Saclay (FR), Korea Institute of Science and Technology (KR)
Openalex Percentile: Top 17%
Neuroscience and Neural Engineering
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Enhanced mechanical and electrical performance of Ti/Au microelectrode arrays using a pre-cured polyimide substrate — 박형달, Wonsuk Choi, et al. · Micro and Nano Systems Letters (2026) | TGRS Research Map | TGRS