Flexible assembled tactile sensor with freely integration design

被引:4
作者
Yang, Lina [1 ]
Li, Yang [1 ]
Wang, Haicheng [1 ]
Wei, Shan [1 ]
Li, Zhongli [1 ]
Liu, Yijian [1 ]
Chen, Da [1 ]
Guo, Qiuquan [2 ]
Sun, Xun [3 ]
机构
[1] Shandong Univ Sci & Technol, Coll Elect & Informat Engn, Qingdao 266590, Peoples R China
[2] Univ Elect Sci & Technol China, Shenzhen Inst Adv Study, Shenzhen 518110, Peoples R China
[3] Guizhou Aerosp Inst Measuring & Testing Technol, Guiyang 550009, Peoples R China
基金
中国国家自然科学基金;
关键词
tactile sensor; self-assembly; elastic-sliding conductive networks; biomimetic; flexible integration; STRAIN SENSOR;
D O I
10.1088/1361-665X/ac8c0b
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
Flexible touch-sensing devices have become increasingly multifunctional in wearable interaction electronics owing to the diversification of material synthesis and the flexibility in the structure design. Especially, the latter provides capabilities for the existing sensors owning the common materials with new possibilities to acquire certain requisite functions. Herein, we designed a strain sensor by assembling the nature rubber (NR) substrate with the MoS2/MWCNT conducting network structure. For demonstrating the flexibility of the proposed integrated model under the application of NR, practical applications were exhibited. The bendable biomimetic hair sensor is integrated into the smart car for robotic tactile to imitate the manner of mammals when sensing the surroundings. Besides, a flexible sensing array can be designed into arbitrary shapes according to users' requirements manifesting its flexibility and practicability. What is more, the sensor used as electronic skin (e-skin) can realize tactile sensing and meanwhile monitor human body movements. The success of this study paves the way for extending this technology to tactile sensing which is a promising lead to develop multifunctional strain sensors for widespread applications.
引用
收藏
页数:12
相关论文
共 52 条
[1]   Stretchable electronics: materials, architectures and integrations [J].
Ahn, Jong-Hyun ;
Je, Jung Ho .
JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2012, 45 (10)
[2]   Ultra-stretchable and skin-mountable strain sensors using carbon nanotubes-Ecoflex nanocomposites [J].
Amjadi, Morteza ;
Yoon, Yong Jin ;
Park, Inkyu .
NANOTECHNOLOGY, 2015, 26 (37)
[3]   Self-powered gold nanowire tattoo triboelectric sensors for soft wearable human-machine interface [J].
An, Tiance ;
Anaya, David Vera ;
Gong, Shu ;
Yap, Lim Wei ;
Lin, Fenge ;
Wang, Ren ;
Yuce, Mehmet R. ;
Cheng, Wenlong .
NANO ENERGY, 2020, 77
[4]   A highly sensitive strain sensor with a sandwich structure composed of two silver nanoparticles layers and one silver nanowires layer for human motion detection [J].
Chen, Liangjun ;
Chen, Guinan ;
Bi, Lili ;
Yang, Zhonglin ;
Wu, Zhen ;
Huang, Minchu ;
Bao, Jiashuan ;
Wang, Wenwen ;
Ye, Cui ;
Pan, Jun ;
Peng, Yongwu ;
Ye, Changhui .
NANOTECHNOLOGY, 2021, 32 (37)
[5]   Machine Learning for Soft Robotic Sensing and Control [J].
Chin, Keene ;
Hellebrekers, Tess ;
Majidi, Carmel .
ADVANCED INTELLIGENT SYSTEMS, 2020, 2 (06)
[6]   Conductive Hierarchical Hairy Fibers for Highly Sensitive, Stretchable, and Water-Resistant Multimodal Gesture-Distinguishable Sensor, VR Applications [J].
Choi, Seunghoon ;
Yoon, Kukro ;
Lee, Sanggeun ;
Lee, Heon Joon ;
Lee, Jaehong ;
Kim, Da Wan ;
Kim, Min-Seok ;
Lee, Taeyoon ;
Pang, Changhyun .
ADVANCED FUNCTIONAL MATERIALS, 2019, 29 (50)
[7]   Effect of layer-distributed carbon nanotube (CNT) on mechanical and piezoresistive performance of intelligent cement-based sensor [J].
Dong, Wenkui ;
Li, Wengui ;
Luo, Zhiyu ;
Guo, Yipu ;
Wang, Kejin .
NANOTECHNOLOGY, 2020, 31 (50)
[8]   Recent progress on flexible and stretchable piezoresistive strain sensors: From design to application [J].
Duan, Lingyan ;
D'hooge, Dagmar R. ;
Cardon, Ludwig .
PROGRESS IN MATERIALS SCIENCE, 2020, 114
[9]   Stretchable strain sensor facilely fabricated based on multi-wall carbon nanotube composites with excellent performance [J].
Fu, Xiang ;
Ramos, Maximiano ;
Al-Jumaily, Ahmed M. ;
Meshkinzar, Ata ;
Huang, Xiyong .
JOURNAL OF MATERIALS SCIENCE, 2019, 54 (03) :2170-2180
[10]   Piezoresistive Elastomer-Based Composite Strain Sensors and Their Applications [J].
Georgopoulou, Antonia ;
Clemens, Frank .
ACS APPLIED ELECTRONIC MATERIALS, 2020, 2 (07) :1826-1842