MXene composite material based electrochemical actuator and preparation method and application thereof

A composite material and composite material layer technology, which is applied to MXene composite material-based electrochemical actuators, and its preparation field can solve the problems of unfavorable MXene sheets, low motor torque quality, small piezoelectric ceramic strain, etc., and achieve bending deformation. The effect of large, fast response and low driving voltage

Pending Publication Date: 2020-10-02
THE NAT CENT FOR NANOSCI & TECH NCNST OF CHINA
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The MXene composite material-based electrochemical actuator of the present invention not only solves the disadvantages of other types of actuators in the prior art (such as internal combustion engines are not suitable for applications with frequent interruptions in motion, electric motors are bulky due to low torq

Method used

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  • MXene composite material based electrochemical actuator and preparation method and application thereof
  • MXene composite material based electrochemical actuator and preparation method and application thereof
  • MXene composite material based electrochemical actuator and preparation method and application thereof

Examples

Experimental program
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Effect test

Embodiment 1

[0070] This embodiment provides a kind of MXene composite material-based electrochemical actuator (for its structural schematic diagram, see figure 1 ), the MXene composite material-based electrochemical actuator contains two layers of electrode layers 1 and one layer of electrolyte layer 2, and the electrolyte layer 2 is sandwiched between the two layers of electrode layers 1 to form a sandwich structure; the electrolyte layer 2 is EMIBF 4 / PVDF film with a thickness of 90 μm; each electrode layer 1 includes a first electrode material layer 11 (MXene layer) with a thickness of 0.5 μm and a second electrode material layer 22 (MXene / PS composite material layer, PS layer) with a thickness of 5 μm. The volume ratio with MXene is 4:1); The first electrode material layer 11 is the outer layer of the MXene composite material-based electrochemical actuator, which is in contact with air; the second electrode material layer 22 is an inner layer , which is in contact with the electrolyt...

Embodiment 2

[0089] The difference from Example 1 is that in the second electrode material layer, the volume ratio of PS to MXene is 1:1.

Embodiment 3

[0091] The difference from Example 1 is that in the second electrode material layer, the volume ratio of PS to MXene is 0.5:1.

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Abstract

The invention relates to an MXene composite material based electrochemical actuator and a preparation method and application thereof. The MXene composite material based electrochemical actuator comprises two electrode layers and an electrolyte layer, wherein the electrolyte layer is clamped between the two electrode layers to form a sandwich structure; the two electrode layers comprise MXene. TheMXene composite material based electrochemical actuator provided by the invention shows excellent actuation performance, and has the characteristics of large bending deformation, low driving voltage,high response speed, good stability, capability of realizing response to frequency and the like; the MXene composite material based electrochemical actuator can be used as bionic equipment, and can beused as a mechanical claw to realize grabbing of articles, imitate vibration of insect wings, swing of leaves, opening and closing of flowers and the like. In addition, the preparation process of theMXene composite material based electrochemical actuator is simple, and complex equipment is not needed.

Description

technical field [0001] The invention belongs to the field of intelligent polymer materials, and in particular relates to an MXene composite material-based electrochemical actuator, its preparation method and application. Background technique [0002] Animal muscles can perform complex movements such as stretching, bending, and twisting, and produce large deformations, and their structure and function have achieved incredible coordination. (Madden JDW et al. Artificial muscle technology: physical principles and naval prospects [J]. IEEE Journal of Oceanic Engineering: 2004, 29: 706-728.) For a long time, people want to imitate the movement of animal muscles, so people have always been In efforts to develop artificial muscles comparable to animal muscles, also known as actuators. Our most common actuators are internal combustion engines, electric motors and piezoelectric ceramics. Internal combustion engines are generally most efficient in continuous operation, making them u...

Claims

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Application Information

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IPC IPC(8): H01L41/047H01L41/09H01L41/22
CPCH10N30/878H10N30/204H10N30/01
Inventor 王彤赵军张忠翁传欣张晖
Owner THE NAT CENT FOR NANOSCI & TECH NCNST OF CHINA
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