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Manufacturing high-performance flexible sensors via advanced patterning techniquesopen access

Authors
Qin, XiaokunZhong, BowenXu, HaoJackman, Joshua A.Xu, KaichenCho, Nam-JoonLou, ZhengWang, Lili
Issue Date
1-Jun-2025
Publisher
IOP Publishing Ltd
Keywords
patterned process; flexible sensor; patterned structure; performance enhancement
Citation
INTERNATIONAL JOURNAL OF EXTREME MANUFACTURING, v.7, no.3
Indexed
SCIE
SCOPUS
Journal Title
INTERNATIONAL JOURNAL OF EXTREME MANUFACTURING
Volume
7
Number
3
URI
https://scholarx.skku.edu/handle/2021.sw.skku/120350
DOI
10.1088/2631-7990/ada857
ISSN
2631-8644
2631-7990
Abstract
Sensors play an important role in information perception during the age of intelligence, particularly in areas such as environmental monitoring and human perception. To meet the huge demands for information acquisition in the whole society, the development of elaborated sensor structures using patterned manufacturing technology is important to improve the performance of sensors. Creating patterned structures can enhance the interaction between the sensitive material and target matter, increase the contact area between the sensor and the target matter, amplify the effect of target matter on the sensor structure, and enhance the density of information sensing by building arrays. This review presents a comprehensive overview of patterned micro-nanostructure manufacturing techniques for performance enhancement of flexible sensors, including printing, exposure lithography, mould method, soft lithography, nanoimprinting lithography, and laser direct writing technology. Meanwhile, it introduces the evaluation methods of flexible sensor performance and discusses how patterned structures influence this performance. Finally, some practical application examples of patterned manufacturing techniques are introduced according to different types of flexible sensors. This review also summarises and provides an outlook on the role of these techniques in enhancing sensor performance offering valuable insights for future developments in the patterned manufacturing of flexible sensors. A comprehensive summary of patterned structure manufacturing techniques used to enhance the performance of flexible sensors is presented.The comparative analysis of different preparation techniques in various aspects can help researchers to choose the appropriate preparation method for flexible sensors.The presentation of a detailed sensor evaluation system allows for a more accurate assessment of sensor performance.Reusable moulds, modular production lines, and computer simulation will enhance sensor-patterned structure preparation techniques.
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