Flexible BaTiO3-PDMS Capacitive Pressure Sensor of High Sensitivity with Gradient Micro-Structure by Laser Engraving and Molding

被引:2
|
作者
Li, Jiayi [1 ,2 ]
Chen, Shangbi [3 ]
Zhou, Jingyu [1 ,2 ]
Tang, Lei [1 ,2 ]
Jiang, Chenkai [1 ,2 ]
Zhang, Dawei [1 ,2 ]
Sheng, Bin [1 ,2 ]
机构
[1] Univ Shanghai Sci & Technol, Sch Opt Elect & Comp Engn, Shanghai 200093, Peoples R China
[2] Engn Res Ctr Opt Instruments & Syst, Shanghai Key Lab Modern Opt Syst, Shanghai 200093, Peoples R China
[3] Shanghai Aerosp Control Technol Inst, Inertial Technol Div, Shanghai 201109, Peoples R China
基金
上海市自然科学基金; 中国国家自然科学基金;
关键词
flexible capacitance pressure sensor; gradient micro-structure; polymer; barium titanate; laser engraving; DIELECTRIC-PROPERTIES; STRAIN; TRANSPARENT;
D O I
10.3390/polym15153292
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
The significant potential of flexible sensors in various fields such as human health, soft robotics, human-machine interaction, and electronic skin has garnered considerable attention. Capacitive pressure sensor is popular given their mechanical flexibility, high sensitivity, and signal stability. Enhancing the performance of capacitive sensors can be achieved through the utilization of gradient structures and high dielectric constant media. This study introduced a novel dielectric layer, employing the BaTiO3-PDMS material with a gradient micro-cones architecture (GMCA). The capacitive sensor was constructed by incorporating a dielectric layer GMCA, which was fabricated using laser engraved acrylic (PMMA) molds and flexible copper-foil/polyimide-tape electrodes. To examine its functionality, the prepared sensor was subjected to a pressure range of 0-50 KPa. Consequently, this sensor exhibited a remarkable sensitivity of up to 1.69 KPa-1 within the pressure range of 0-50 KPa, while maintaining high pressure-resolution across the entire pressure spectrum. Additionally, the pressure sensor demonstrated a rapid response time of 50 ms, low hysteresis of 0.81%, recovery time of 160 ms, and excellent cycling stability over 1000 cycles. The findings indicated that the GMCA pressure sensor, which utilized a gradient structure and BaTiO3-PDMS material, exhibited notable sensitivity and a broad linear pressure range. These results underscore the adaptability and viability of this technology, thereby facilitating enhanced flexibility in pressure sensors and fostering advancements in laser manufacturing and flexible devices for a wider array of potential applications.
引用
收藏
页数:16
相关论文
共 50 条
  • [1] Printed Capacitive Pressure Sensor with Enhanced Sensitivity through a Layered PDMS/BaTiO3 Structure
    Wu, Wenxin
    Schnittker, Kevin
    Andrews, Joseph
    2021 IEEE SENSORS, 2021,
  • [2] High sensitivity capacitive flexible pressure sensor based on PDMS double wrinkled microstructure
    Shuailong Wang
    Siyuan Chang
    Yangyang Song
    Xinyang Qiao
    Leiyu Li
    Le Zhao
    Pan Yang
    Shihui Yu
    Journal of Materials Science: Materials in Electronics, 2024, 35
  • [3] High sensitivity capacitive flexible pressure sensor based on PDMS double wrinkled microstructure
    Wang, Shuailong
    Chang, Siyuan
    Song, Yangyang
    Qiao, Xinyang
    Li, Leiyu
    Zhao, Le
    Yang, Pan
    Yu, Shihui
    JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS, 2024, 35 (01)
  • [4] Investigations on the preparation and properties of high-sensitive BaTiO3/MwCNTs/PDMS flexible capacitive pressure sensor
    Wang, Feifei
    Tan, Youhong
    Peng, Haiyi
    Meng, Fancheng
    Yao, Xiaogang
    MATERIALS LETTERS, 2021, 303
  • [5] Flexible Pressure Sensor with Micro-Structure Arrays Based on PDMS and PEDOT:PSS/PUD&CNTs Composite Film with 3D Printing
    Shao, Yiwei
    Zhang, Qi
    Zhao, Yulong
    Pang, Xing
    Liu, Mingjie
    Zhang, Dongliang
    Liang, Xiaoya
    MATERIALS, 2021, 14 (21)
  • [6] Bioinspired Engineering of Fillable Gradient Structure into Flexible Capacitive Pressure Sensor Toward Ultra-High Sensitivity and Wide Working Range
    Hong, Weiqiang
    Guo, Xiaohui
    Zhang, Tianxu
    Liu, Yiyang
    Yan, Zihao
    Zhang, Anqi
    Qian, Zhibin
    Wang, Junyi
    Zhang, Xinyi
    Jin, Chengchao
    Zhao, Jingji
    Liu, Tiancheng
    Hong, Qi
    Xu, Yaohua
    Xia, Yun
    Zhao, Yunong
    MACROMOLECULAR RAPID COMMUNICATIONS, 2023, 44 (22)
  • [7] High-Sensitivity Flexible Pressure Sensor Based on Micro-Nano Structure
    Bao, Yan
    Xu, Jiachen
    Guo, Ruyue
    Ma, Jianzhong
    PROGRESS IN CHEMISTRY, 2023, 35 (05) : 709 - 720
  • [8] Flexible M-Tooth Hybrid Micro-Structure-Based Capacitive Pressure Sensor With High Sensitivity and Wide Sensing Range
    Palaniappan, Valliammai
    Panahi, Masoud
    Maddipatla, Dinesh
    Zhang, Xingzhe
    Masihi, Simin
    Emani, Himanaga Rama Krishna Manoj
    Narakathu, Binu B.
    Bazuin, Bradley J.
    Atashbar, Massood Z.
    IEEE SENSORS JOURNAL, 2021, 21 (23) : 26261 - 26268
  • [9] A flexible capacitive pressure sensor with a hybrid porous PDMS/SA hydrogel structure for touch/pain detection
    Huang, Haizhou
    Ran, Xu
    Wan, Shu
    Wang, Yi
    Bi, Hengchang
    NANOSCALE, 2024, 16 (38) : 17926 - 17933
  • [10] Flexible Capacitive Pressure Sensor with High Sensitivity and Wide Range Based on a Cheetah Leg Structure via 3D Printing
    Hong, Weiqiang
    Guo, Xiaohui
    Zhang, Tianxu
    Zhang, Anqi
    Yan, Zihao
    Zhang, Xinyi
    Li, Xianghui
    Guan, Yuxin
    Liao, Dongzhi
    Lu, Haochen
    Liu, Hanyu
    Hu, Jiangtao
    Niu, Yongzheng
    Hong, Qi
    Zhao, Yunong
    ACS APPLIED MATERIALS & INTERFACES, 2023, 15 (39) : 46347 - 46356