Metal surface treatment method based on chitosan and mussel adhesion protein composite membrane

A technology for metal surface treatment and protein adhesion, applied in electrolytic organic material coating, etc., can solve environmental and human health hazards and other problems, and achieve the effects of promoting development, excellent biocompatibility, and strong operability

Active Publication Date: 2015-08-26
XIAMEN UNIV
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, due to the need to use strong acid and alkali or toxic treatment agents in general convention

Method used

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  • Metal surface treatment method based on chitosan and mussel adhesion protein composite membrane
  • Metal surface treatment method based on chitosan and mussel adhesion protein composite membrane
  • Metal surface treatment method based on chitosan and mussel adhesion protein composite membrane

Examples

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[0033] The present invention will be further described below in conjunction with the accompanying drawings.

[0034] The reagents used in the examples are all commercially available products unless otherwise specified, and the operations used are common operations in the art unless otherwise specified.

[0035] The degree of deacetylation of chitosan used in the present invention is 85% to 95%, which can be a commercially available product, or can be obtained by deacetylating chitin according to an existing method. The chitosan used in the embodiment is a commercially available product, but Not limited to this.

[0036] Wherein, the mussel protein used in the present invention can be a commercially available product, or can be extracted from natural mussels according to an existing extraction method. The mussel protein used in the examples is from the Royal Swedish Institute of Technology, but not limited thereto.

[0037] Specific examples are shown in Table 1.

[0038] Ta...

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PUM

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Abstract

The invention discloses a metal surface treatment method based on a chitosan and mussel adhesion protein composite membrane, and relates to high-molecular compounds. The method comprises specific steps that step-by-step polishing, ultrasonic cleaning and drying are carried out on a metal material surface to be treated, and then an electro-deposition is adopted to enable chitosan and mussel adhesion protein to form a composite membrane layer on the metal material surface; and electro-deposition specifically comprises the steps that chitosan is added into a chitosan buffer solution to form a chitosan solution; the mussel adhesion protein is added into a mussel adhesion protein buffer solution to form a mussel adhesion protein solution; and the metal material to be treated is sequentially immersed into the chitosan solution and the mussel adhesion protein solution to be electrically deposited, and after drying, the composite membrane layer is formed on the metal material surface. The composite membrane layer is formed on the metal material surface, and the electro-deposition step can be repeatedly carried out to form multiple composite coatings. The method is simple, easy to implement and particularly suitable for corrosion prevention of metallic biomaterials.

Description

technical field [0001] The invention relates to a polymer compound, in particular to a metal surface treatment method based on a composite film of chitosan and mussel adhesion protein. Background technique [0002] Metal materials can be seen everywhere in daily life, and people use metal materials all the time. However, metal materials will inevitably corrode under the influence of the surrounding environment, which not only wastes resources and energy, causes environmental pollution, but may even cause major accidents, bringing huge economic losses and social harm to human production and life. [0003] Although the corrosion of metal materials is inevitable, some anti-corrosion measures can still be taken to control and slow down the corrosion of metal materials. Surface anti-corrosion technology is one of the most widely used anti-corrosion technologies. However, due to the need to use strong acid and strong alkali or toxic treatment agents in general conventional surfa...

Claims

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Application Information

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IPC IPC(8): C25D9/02
Inventor 林昌健蒋平丽潘金山侯瑞青孙岚董士刚陈成栋梁建鹤
Owner XIAMEN UNIV
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