Scalable Imprinting of Flexible Multiplexed Sensor Arrays with Distributed Piezoelectricity-Enhanced Micropillars for Dynamic Tactile Sensing

被引:87
作者
Chen, Xiaoliang [1 ]
Shao, Jinyou [1 ]
Tian, Hongmiao [1 ]
Li, Xiangming [1 ]
Wang, Chunhui [1 ]
Luo, Yongsong [1 ]
Li, Sheng [1 ]
机构
[1] Xi An Jiao Tong Univ, State Key Lab Mfg Syst Engn, Xian 710049, Shaanxi, Peoples R China
基金
中国博士后科学基金; 中国国家自然科学基金;
关键词
flexible sensor arrays; micropillars; nanoimprinting; piezoelectricity; tactile sensors; CARBON NANOTUBES; PRESSURE; TRANSPARENT; NANOGENERATOR; MATRIX; DOME;
D O I
10.1002/admt.202000046
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The ongoing revolution of human-robot interactions and electronic skins has created new requirements for tactile sensors, including good mechanical flexibility, high sensitivity, and the availability of distributed pixels for detecting force distribution. Here, a highly sensitive flexible sensor array based on piezoelectricity-enhanced vertically aligned P(VDF-TrFE) micropillars is developed for dynamic tactile sensing. The core piezoelectric sensing micropillars are fabricated using a straightforward and scalable nanoimprinting technology and then sandwiched between a pair of cross electrode arrays to construct multiplexed sensor arrays. Due to the proposed structural design and nanoimprinting methodology, the sensor pixels exhibit uniform output generation, robust output stability, and scalable fabrication ability. In addition, taking advantage of the high compressibility and enhanced strain of the piezoelectric micropillars compared to planar films, the microstructured sensors show an enhanced sensitivity of 228.2 mV N-1 and a highly linear response to loads. By integrating the flexible sensor with a portable signal processing circuit, a complete tactile sensing system is successfully developed to provide clear intuitive user interfaces. The good flexibility and robust stability of the sensor arrays enable them to be attached onto curved surface for real-time tracking of dynamic force and imaging the force distribution.
引用
收藏
页数:9
相关论文
共 51 条
[1]  
[Anonymous], 2017, SMALL
[2]   Graded intrafillable architecture-based iontronic pressure sensor with ultra-broad-range high sensitivity [J].
Bai, Ningning ;
Wang, Liu ;
Wang, Qi ;
Deng, Jue ;
Wang, Yan ;
Lu, Peng ;
Huang, Jun ;
Li, Gang ;
Zhang, Yuan ;
Yang, Junlong ;
Xie, Kewei ;
Zhao, Xuanhe ;
Guo, Chuan Fei .
NATURE COMMUNICATIONS, 2020, 11 (01)
[3]   Flexible and Controllable Piezo-Phototronic Pressure Mapping Sensor Matrix by ZnO NW/p-Polymer LED Array [J].
Bao, Rongrong ;
Wang, Chunfeng ;
Dong, Lin ;
Yu, Ruomeng ;
Zhao, Kun ;
Wang, Zhong Lin ;
Pan, Caofeng .
ADVANCED FUNCTIONAL MATERIALS, 2015, 25 (19) :2884-2891
[4]   An integrated 16 x 16 PVDF pyroelectric sensor array [J].
Binnie, TD ;
Weller, HJ ;
He, ZQ ;
Setiadi, D .
IEEE TRANSACTIONS ON ULTRASONICS FERROELECTRICS AND FREQUENCY CONTROL, 2000, 47 (06) :1413-1420
[5]   Energy Migration Upconversion in Ce(III)-Doped Heterogeneous Core-Shell-Shell Nanoparticles [J].
Chen, Xian ;
Jin, Limin ;
Sun, Tianying ;
Kong, Wei ;
Yu, Siu Fung ;
Wang, Feng .
SMALL, 2017, 13 (43)
[6]   Transparent and stretchable bimodal triboelectric nanogenerators with hierarchical micro-nanostructures for mechanical and water energy harvesting [J].
Chen, Xiaoliang ;
Xiong, Jiaqing ;
Parida, Kaushik ;
Guo, Meiling ;
Wang, Cheng ;
Wang, Chao ;
Li, Xiangming ;
Shao, Jinyou ;
Lee, Pooi See .
NANO ENERGY, 2019, 64
[7]   Self-powered flexible pressure sensors with vertically well-aligned piezoelectric nanowire arrays for monitoring vital signs [J].
Chen, Xiaoliang ;
Shao, Jinyou ;
An, Ningli ;
Li, Xiangming ;
Tian, Hongmiao ;
Xu, Chuan ;
Ding, Yucheng .
JOURNAL OF MATERIALS CHEMISTRY C, 2015, 3 (45) :11806-11814
[8]   A high performance P(VDF-TrFE) nanogenerator with self-connected and vertically integrated fibers by patterned EHD pulling [J].
Chen, Xiaoliang ;
Tian, Hongmiao ;
Li, Xiangming ;
Shao, Jinyou ;
Ding, Yucheng ;
An, Ningli ;
Zhou, Yaopei .
NANOSCALE, 2015, 7 (27) :11536-11544
[9]   Flexible fiber-based hybrid nanogenerator for biomechanical energy harvesting and physiological monitoring [J].
Chen, Xuexian ;
Song, Yu ;
Su, Zongming ;
Chen, Haotian ;
Cheng, Xiaoliang ;
Zhang, Jinxin ;
Han, Mengdi ;
Zhang, Haixia .
NANO ENERGY, 2017, 38 :43-50
[10]   Recent Progress in Technologies for Tactile Sensors [J].
Chi, Cheng ;
Sun, Xuguang ;
Xue, Ning ;
Li, Tong ;
Liu, Chang .
SENSORS, 2018, 18 (04)