Coated boron nitride and preparation method and application thereof, biodegradable flame-retardant composite material and preparation method and application thereof

By coating boron nitride with silane coupling agents and phytic acid-modified MOF materials, and combining them with phosphorus-based flame retardants, a multi-level flame retardant network is constructed. This solves the problems of flammability and poor compatibility of PBAT and PLA, achieving high-efficiency flame retardancy, improved thermal stability and mechanical strength, and making it suitable for various fields.

CN122278002APending Publication Date: 2026-06-26GUIYANG UNIV
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
GUIYANG UNIV
Filing Date
2026-04-29
Publication Date
2026-06-26

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Abstract

This invention belongs to the field of flame retardant technology, specifically relating to a coated boron nitride and its preparation method and application, and a biodegradable flame-retardant composite material and its preparation method and application. This invention employs a multi-level structure regulation approach, utilizing silane coupling agents and chemical bonding for surface coating modification, effectively alleviating stress concentration. Furthermore, regular polyhedral flame-retardant units are constructed on the coated and modified two-dimensional boron nitride surface, building a three-dimensional flame-retardant network. Through phytic acid molecular bridging, an inorganic-organic interface transition layer is formed, significantly improving the interfacial adhesion strength between the functional phase and the matrix resin. This invention constructs a flame-retardant structural system based on molecular configuration optimization, optimizing the interfacial compatibility between the functional phase and the biodegradable matrix resin. It utilizes a bio-based phosphorus-nitrogen synergistic flame-retardant system combined with a two-dimensional boron nitride structure for composite design, constructing a flame-retardant network system with both high-efficiency flame-retardant properties and excellent performance.
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