High-strength self-induction hyperbranched binding material as well as green preparation method and application thereof
The invention provides a preparation method of a high-strength self-induction hyperbranched binding material. According to the preparation method disclosed by the invention, the hyperbranched structure material is endowed with high strength, high viscosity and self-induction performance by utilizing...
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creator | CHEN HAIMING MAO, DONGSHENG ZHU LINGZHUANG LIN HAOHAO |
description | The invention provides a preparation method of a high-strength self-induction hyperbranched binding material. According to the preparation method disclosed by the invention, the hyperbranched structure material is endowed with high strength, high viscosity and self-induction performance by utilizing the synergistic effect of non-covalent bonds such as ionic bonds and hydrogen bonds, the hyperbranched structure material has good bonding capacity on bonded objects including various materials such as glass, metal, plastic and ceramic, and the tensile strength can reach 5MPa or above. The end-ionized supramolecular structure material is prepared through reaction in a water environment, the preparation process is green, environmentally friendly and free of pollution, and the end-ionized supramolecular structure material has very important significance on environmental protection and carbon neutralization. The high-strength and self-induction hyperbranched binding material disclosed by the invention shows good bind |
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According to the preparation method disclosed by the invention, the hyperbranched structure material is endowed with high strength, high viscosity and self-induction performance by utilizing the synergistic effect of non-covalent bonds such as ionic bonds and hydrogen bonds, the hyperbranched structure material has good bonding capacity on bonded objects including various materials such as glass, metal, plastic and ceramic, and the tensile strength can reach 5MPa or above. The end-ionized supramolecular structure material is prepared through reaction in a water environment, the preparation process is green, environmentally friendly and free of pollution, and the end-ionized supramolecular structure material has very important significance on environmental protection and carbon neutralization. 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According to the preparation method disclosed by the invention, the hyperbranched structure material is endowed with high strength, high viscosity and self-induction performance by utilizing the synergistic effect of non-covalent bonds such as ionic bonds and hydrogen bonds, the hyperbranched structure material has good bonding capacity on bonded objects including various materials such as glass, metal, plastic and ceramic, and the tensile strength can reach 5MPa or above. The end-ionized supramolecular structure material is prepared through reaction in a water environment, the preparation process is green, environmentally friendly and free of pollution, and the end-ionized supramolecular structure material has very important significance on environmental protection and carbon neutralization. The high-strength and self-induction hyperbranched binding material disclosed by the invention shows good bind</abstract><oa>free_for_read</oa></addata></record> |
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subjects | ADHESIVE PROCESSES NOT PROVIDED FOR ELSEWHERE ADHESIVES CHEMISTRY COMPOSITIONS BASED THEREON DYES MACROMOLECULAR COMPOUNDS OBTAINED OTHERWISE THAN BY REACTIONSONLY INVOLVING UNSATURATED CARBON-TO-CARBON BONDS METALLURGY MISCELLANEOUS APPLICATIONS OF MATERIALS MISCELLANEOUS COMPOSITIONS NATURAL RESINS NON-MECHANICAL ASPECTS OF ADHESIVE PROCESSES IN GENERAL ORGANIC MACROMOLECULAR COMPOUNDS PAINTS POLISHES THEIR PREPARATION OR CHEMICAL WORKING-UP USE OF MATERIALS AS ADHESIVES |
title | High-strength self-induction hyperbranched binding material as well as green preparation method and application thereof |
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