A preparation method of self-healing material and application of the self-healing material

A self-healing material and oligomer technology, applied in the direction of triboelectric generators, can solve the problems of low tensile performance, low repair efficiency, and long repair time of self-repairing materials, and achieve high tensile performance and strong self-repairing ability. , the effect of excellent self-healing performance

Active Publication Date: 2022-02-01
SUZHOU UNIV
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  • Abstract
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Problems solved by technology

[0004] The self-healing materials used for flexible electronic devices with self-healing function in the prior art have a long repair time and low repair efficiency, and even require additional external treatments such as radiation, heating, water spraying, etc. to have the repair function
Moreover, the existing self-healing materials have low tensile properties, and it is difficult to actually use them in triboelectric nanogenerators

Method used

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  • A preparation method of self-healing material and application of the self-healing material
  • A preparation method of self-healing material and application of the self-healing material
  • A preparation method of self-healing material and application of the self-healing material

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Embodiment Construction

[0045] figure 1 A schematic structural view showing a method for preparing a self-healing material according to an embodiment of the present invention. Such as figure 1 Shown, this preparation method comprises:

[0046]Step S100, using bis(3-aminopropyl)-terminated poly(dimethylsiloxane) as a polymer matrix, and 2,6-pyridinedicarbonyl dichloride and 4,4'-methylenebis( Cyclohexyl isocyanate) as a spacer, the reaction obtained chemical formula is PDMS-PU x -PA 1-x The oligomer of , wherein, 0

[0047] Step S200, mixing the oligomer and zinc chloride to obtain the chemical formula PDMS-PU x -PA 1-x - The first self-healing material of Zn.

[0048] figure 2 A molecular formula structure diagram of the first self-healing material according to an embodiment of the present invention is shown. image 3 A molecular formula structure diagram of part of the first self-healing material according to an embodiment of the present invention is shown. Depend on figure 2 and ...

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Abstract

The invention provides a preparation method of a self-repairing material and an application of the self-repairing material. The preparation method comprises the following steps: using bis(3-aminopropyl)-terminated poly(dimethylsiloxane) as a polymer matrix, using 2,6-pyridinedicarbonyl dichloride and 4,4'- Methyl bis(cyclohexyl isocyanate) is used as a spacer, and the chemical formula obtained by the reaction is PDMS‑PU x -PA 1‑x The oligomer, wherein, 0<x<1; The oligomer and zinc chloride are mixed to obtain a chemical formula of PDMS‑PU x -PA 1‑x ‑Zn's first self-healing material. According to the embodiment of the present invention, the silicon oxide chain of polydimethylsiloxane is used as the matrix, and the double cross-linking effect of ion complexation and hydrogen bonding is introduced through chain extension, and a compound with high tensile properties and excellent self-sufficiency is synthesized. Self-healing materials with healing properties.

Description

technical field [0001] The invention relates to the field of self-repairing materials, in particular to a method for preparing a self-repairing material and an application of the self-repairing material. Background technique [0002] With the advancement of technology, flexible and stretchable electronic devices such as electronic skins, electronic displays, supercapacitors, health monitoring sensors, etc. have great application prospects in wearable electronic devices. However, traditional power sources cannot meet the needs of flexible electronic devices, because traditional power sources such as lithium-ion batteries, lead-acid batteries, etc. have no stretchability, limited service life, and pollute the environment. In recent years, triboelectric nanogenerators have attracted extensive attention due to their high efficiency, stretchability, and environmental friendliness, and are expected to solve the problem of flexible power sources. [0003] However, when triboelectr...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C08G77/455C08G77/458C08G18/75C08G18/61C08G69/42C08J3/24C08L83/10C08K3/16C08K3/08H02N1/04
CPCC08G77/455C08G77/458C08G18/758C08G18/61C08G69/42C08J3/243C08K3/08C08K3/16H02N1/04C08J2383/10C08K2003/168C08K2003/0806C08K2201/011C08L83/10
Inventor 孙旭辉文震蒋金星
Owner SUZHOU UNIV
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