MoS2 nanoflowers and PEDOT:PSS nanocomposite enabling wearable dual-mode pressure sensors

被引:0
|
作者
WANG FengMing [1 ]
YANG WeiJia [1 ]
MA Ke [1 ]
SHEN GengZhe [2 ]
SU DaoJian [1 ,3 ]
LI BaiJun [1 ]
WANG ShuangPeng [3 ]
QIN BoLong [1 ]
ZHANG Chi [1 ]
XIN Yue [1 ]
CAO XiaoBing [1 ]
HE Xin [1 ]
机构
[1] School of Applied Physics and Materials,Wuyi University
[2] Biomaterials R&D Center,Zhuhai Institute of Advanced Technology,Chinese Academy of Sciences
[3] Joint Key Laboratory of the Ministry of Education,Institute of Applied Physics and Materials Engineering,University of Macau
关键词
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暂无
中图分类号
TB332 [非金属复合材料]; TP212 [发送器(变换器)、传感器];
学科分类号
080202 ; 0805 ; 080502 ;
摘要
A versatile sensing platform employing inorganic MoS2nanoflowers and organic poly(3,4-ethylene dioxythiophene): poly(styrene sulfonate)(PEDOT:PSS) has been investigated to develop the resistive and capacitive force-sensitive devices. The microstructure of the sensing layer heightens the sensitivity and response time of the dual-mode pressure sensors by augmenting electron pathways and inner stress in response to mechanical stimuli. Consequently, the capacitive and resistive sensors exhibit sensitivities of 0.37 and 0.12 kPa-1, respectively, while demonstrating a remarkable response time of approximately 100 ms.Furthermore, it is noteworthy that the PEDOT:PSS layer exhibits excellent adhesion to polydimethylsiloxane(PDMS) substrates, which contributes to the development of highly robust force-sensitive sensors capable of enduring more than 10000loading/unloading cycles. The combination of MoS2/PEDOT:PSS layers in these dual-mode sensors has shown promising results in detecting human joint movements and subtle physiological signals. Notably, the sensors have achieved a remarkable precision rate of 98% in identifying target objects. These outcomes underscore the significant potential of these sensors for integration into applications such as electronic skin and human-machine interaction.
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页码:1737 / 1747
页数:11
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