songxiaofeng
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- Supervisor of Doctorate Candidates
- Supervisor of Master's Candidates
- Name (Pinyin):songxiaofeng
- E-Mail:
- School/Department:化学工程学院
- Administrative Position:制药工程系主任
- Education Level:Postgraduate (Postdoctoral)
- Business Address:北湖校区化工化生楼B513
- Contact Information:13080037022(微信)/QQ:15359494615
- Degree:Doctoral Degree in Science
- Alma Mater:吉林大学
- Teacher College:化学工程学院
- Discipline:Polymer Chemistry and Physics
Applied Chemistry
Contact Information
No content
- Paper Publications
Phosphorus- and nitrogen-bridged chitooligosaccharide as an effective flame-retardant coating of fiber cardboard
Release time:2026-06-22 Hits:
- Journal:ACS Sustainable Chemistry & Engineering
- Key Words:CPDF, flame retardation, bending resistance, durability, fiber cardboard
- Abstract:Fiber cardboard as one type of plant fiberboard is often used as a package and building material; however, its intrinsic flammability throws up big obstacles to its wide application. In this work, a phosphorus- and nitrogen-bridged chitooligosaccharide (CPDF) is synthesized via a two-step substitution method. The CPDF can be well dissolved in alcohol solvents and coated on the surface of the fiber cardboard. With increasing coating rate, the flame retardation efficiency and bending resistance of fiber cardboard increase. Because the coating rate is 21.7 wt %, the fiber cardboard exhibits outstanding fire safety, of which its limiting oxygen index is 28% and its UL-94 rating is B-1 grade. The peak heat release rate (PHRR), total heat release (THR), and average effective heat release (Av-EHR) decreased correspondingly. The inflaming retarding mechanism was put forward. A seed layer is produced initially to retard heat exchange and lower the damage to the internal polymer matrix; subsequently, phosphorus− oxygen radical dequenching as well as noncombustible gas dilution and a ripe carbon layer barrier cross each other, "braking” the “fire-car” completely. CPDF coating enhances the bending resistance of fiber cardboard, and stiffness climbed from 1124.8 to 1198.5 mN·m. Even after undergoing durability tests, CPDF retains its good inflammable retarding ability.
- Co-author:石建国
- First Author:宋晓峰(教师)
- Indexed by:Journal paper
- Issue:13
- Translation or Not:no
- Date of Publication:2025-02-27
- Included Journals:SCI
