Liu Kunling, Cheng Yao, Li Jinhao, Ding Dan, Liu Yunlan, Zhang Guangxian, Zhang Fengxiu
Institute of Bioorganic and Medicinal Chemistry, College of Chemistry and Chemical Engineering, Southwest University, No. 2 Tiansheng Street, Chongqing 400715, China.
College of Sericulture, Textile and Biomass Science, Southwest University, Chongqing 400715, China.
J Colloid Interface Sci. 2023 Jun 15;640:688-697. doi: 10.1016/j.jcis.2023.02.138. Epub 2023 Mar 5.
Cotton fabrics are extremely flammable. Therefore, ammonium salt of dipentaerythritol hexaphosphoric acid (ADPHPA), a novel reactive phosphorus flame retardant without halogen and formaldehyde, was synthesized by solvent-free synthesis method. Surface chemical graft modification was chosen to introduce flame retardant, imparting its flame retardancy and washability. SEM indicated that ADPHPA entered the interior of cotton fiber, which was grafted with OH of control cotton fabrics (CCF) by forming POC covalent bonds to obtain treated cotton fabrics (TCF). There were no apparent differences in the fiber morphology and crystal structure after treatment according to SEM and XRD analysis. TG analysis demonstrated that the decomposition process of TCF was changed compared with CCF, while lower heat release rate and total heat release of TCF indicated its combustion efficiency was also reduced based on cone calorimetry test. Meanwhile, in the durability test, TCF had undergone 50 laundering cycles (LCs) in accordance with AATCC-61-2013 3A standard and had a short vertical combustion charcoal length, which were able to be regard as durable flame-retardant fabrics. The mechanical properties of TCF decreased to a degree, but did not affect the actual use of cotton fabrics. Taken as a whole, ADPHPA has research significance and development potential as a durable phosphorus-based flame retardant.
棉织物极易燃烧。因此,采用无溶剂合成法合成了一种新型的无卤无甲醛反应型磷系阻燃剂——二季戊四醇六磷酸铵(ADPHPA)。选择表面化学接枝改性来引入阻燃剂,赋予其阻燃性和耐洗性。扫描电子显微镜(SEM)表明,ADPHPA进入棉纤维内部,通过形成POC共价键与对照棉织物(CCF)的羟基接枝,从而得到处理后的棉织物(TCF)。根据SEM和X射线衍射(XRD)分析,处理后纤维形态和晶体结构没有明显差异。热重(TG)分析表明,与CCF相比,TCF的分解过程发生了变化,而基于锥形量热法测试,TCF较低的热释放速率和总热释放表明其燃烧效率也降低了。同时,在耐久性测试中,根据美国纺织化学家和染色家协会(AATCC)-61-2013 3A标准,TCF经过了50次洗涤循环(LCs),且垂直燃烧炭长较短,可被视为耐久阻燃织物。TCF的力学性能有一定程度下降,但不影响棉织物的实际使用。总体而言,ADPHPA作为一种耐久的磷系阻燃剂具有研究意义和开发潜力。