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Fully sprayed MXene-based high-performance flexible piezoresistive sensor for image recognition
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作者 Zhi-Dong Zhang xue-Feng Zhao +4 位作者 Qing-Chao Zhang Jie Liang Hui-Nan Zhang Tian-Sheng Zhang chen-yang xue 《Nano Materials Science》 EI CAS CSCD 2024年第1期77-85,共9页
High-performance flexible pressure sensors provide comprehensive tactile perception and are applied in human activity monitoring,soft robotics,medical treatment,and human-computer interface.However,these flexible pres... High-performance flexible pressure sensors provide comprehensive tactile perception and are applied in human activity monitoring,soft robotics,medical treatment,and human-computer interface.However,these flexible pressure sensors require extensive nano-architectural design and complicated manufacturing and are timeconsuming.Herein,a highly sensitive,flexible piezoresistive tactile sensor is designed and fabricated,consisting of three main parts:the randomly distributed microstructure on T-ZnOw/PDMS film as a top substrate,multilayer Ti_(3)C_(2)-MXene film as an intermediate conductive filler,and the few-layer Ti_(3)C_(2)-MXene nanosheetbased interdigital electrodes as the bottom substrate.The MXene-based piezoresistive sensor with randomly distributed microstructure exhibits a high sensitivity over a broad pressure range(less than 10 kPa for 175 kPa^(-1))and possesses an out-standing permanence of up to 5000 cycles.Moreover,a 16-pixel sensor array is designed,and its potential applications in visualizing pressure distribution and an example of tactile feedback are demonstrated.This fully sprayed MXene-based pressure sensor,with high sensitivity and excellent durability,can be widely used in,electronic skin,intelligent robots,and many other emerging technologies. 展开更多
关键词 Piezoresistive sensor Ti_(3)C_(2)-MXene T-ZnOw/PDMS film Randomly distributed microstructure
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A Bionic Fish Cilia Median-Low Frequency Three-Dimensional Piezoresistive MEMS Vector Hydrophone 被引量:6
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作者 Guo-jun Hang Zhen Li +3 位作者 Shu-juan Wu chen-yang xue Shi-e Yang Wen-dong Zhang 《Nano-Micro Letters》 SCIE EI CAS 2014年第2期136-142,共7页
A bionic fish cilia median-low frequency three-dimensional MEMS vector hydrophone is reported in this paper. The piezoresistive reasonable position was obtained through finite element analysis by ANSYS and the structu... A bionic fish cilia median-low frequency three-dimensional MEMS vector hydrophone is reported in this paper. The piezoresistive reasonable position was obtained through finite element analysis by ANSYS and the structure was formed by MEMS processes including lithography, ion implantation, PECVD and etching,etc. The standing wave barrel results show that the lowest sensitivity of the hydrophone is-200 d B and reach up to-160 d B(in which the voltage amplification factor is 300). It has a good frequency response characteristics in 25 Hz ~ 1500 Hz band. Directivity tests displayed that the hydrophone has a good "8"-shaped directivity,in which the resolution is not less than 30 d B, and asymmetry of the maximum axial sensitivity value is less than 1.2 d B. 展开更多
关键词 MEMS vector hydrophone BIONIC ANSYS Median-low frequency
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Synthesis of magnetic carrier sub-microparticles with high stability through carbon reduction and solation coating methods
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作者 Qiang Zhang Li-Bo Gao +4 位作者 Jun-Yang Li Ze-Bin Guo Zhen-Yin Hai Yan-Ting Xing chen-yang xue 《Rare Metals》 SCIE EI CAS CSCD 2016年第11期870-873,共4页
This paper presents a novel approach in synthesizing SiO_2-Fe_3O_4magnetic carrier with high stability.The Fe_3O_4 magnetic powders were synthesized via onestep method named carbon reduction method. The advantages of ... This paper presents a novel approach in synthesizing SiO_2-Fe_3O_4magnetic carrier with high stability.The Fe_3O_4 magnetic powders were synthesized via onestep method named carbon reduction method. The advantages of the methods are of simple process, none lead-in pollution agent, low cost and adaptation to large-lot production. The stability of the magnetic powders is improved through modifying the Fe_3O_4 with SiO_2 in solation method.The results of the characterizations show that the superparamagnetic SiO_2-Fe_3O_4sub-microparticles(~600 nm)with saturation intensity of 36.4 m A·m^2·g^(-1)are obtained successfully. Moreover, the quantitating, repeatability and high stability of the carbon reduction method are demonstrated as well. 展开更多
关键词 Carbon reduction method SUPERPARAMAGNETIC Fe304-SiO2
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