Zhoufeng Wang , Xiubo Long , Wenlong Yao , Wenchi Zhang , Jinian Yang
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引用次数: 0
摘要
通过掺杂三种双酚 A(BPA)衍生物单体(4,4'-磺基双酚(BPS)、2,2-双(4-羟基苯基)丁烷(BPB)和 9,9-双(4-羟基苯基)芴(BHPF)),采用界面聚合法合成了具有相同投料比的三种双酚 A 型聚芳基酸酯(PARS、PARB 和 PARF)。通过三种方法研究了聚芳酸酯的热分解动力学,PARS、PARB 和 PARF 的活化能分别为 198.34、218.12 和 234.96 kJ/mol。三种聚芳基化合物的热稳定性依次为 PARS、PARB 和 PARF。根据积分主图法拟合,随机成核是双酚 A 型聚芳基酸盐的热解机理。通过热重分析-傅立叶变换红外光谱法(TG/FTIR)和热解-气相色谱-质谱法(Py-GC/MS)进一步阐明了热解过程。研究表明,聚芳酸酯的热解途径受其骨架基团性质的显著影响;具体而言,较弱键(如 C-S、C-O)的断裂促进了分子链的初步裂解。这种初步的破坏催化了进一步的分解,形成了活性自由基,这些自由基随后发生自结合或异构化,最终形成新的化合物。本研究清楚地表明了双酚 A 衍生单体对聚芳酸酯热性能和热解行为的影响。
Study on the kinetics and mechanism of thermal decomposition of bisphenol A-type polyarylates
Three BPA-type polyarylates (PARS, PARB and PARF) with the same feeding ratio were synthesized by interfacial polymerization by doping three bisphenol A (BPA) derivative monomers (4,4’-sulfobisphenol (BPS), 2,2-bis(4-hydroxy phenyl)butane (BPB) and 9,9-bis(4-hydroxyphenyl)fluorene (BHPF)). The kinetics of thermal decomposition of polyarylate was studied by three methods and the activation energies of PARS, PARB and PARF were 198.34, 218.12 and 234.96 kJ/mol, respectively. The thermal stability of the three polyarylates followed PARS < PARB < PARF. Fitted by the integral Master-Plots method, the random nucleation was the pyrolysis mechanism of BPA-type polyarylates. Further elucidation of the pyrolysis process was attained through the deployment of thermogravimetric analysis coupled with Fourier transform infrared spectrometry (TG/FTIR) and pyrolysis-gas chromatography-mass spectrometry (Py-GC/MS). The study suggested that the pyrolysis pathways of polyarylates were significantly influenced by the properties of their backbone groups; specifically, the breaking weaker bonds (e.g., C–S, C–O) facilitated the initial cleavage of molecular chains. This preliminary disruption then catalyzed further decomposition, forming the reactive radicals that subsequently underwent self-association or isomerization, culminating in new compounds. The effect of BPA-derived monomers on the thermal properties and pyrolytic behaviour of polyarylate was clearly demonstrated in this study.
期刊介绍:
The Journal of Analytical and Applied Pyrolysis (JAAP) is devoted to the publication of papers dealing with innovative applications of pyrolysis processes, the characterization of products related to pyrolysis reactions, and investigations of reaction mechanism. To be considered by JAAP, a manuscript should present significant progress in these topics. The novelty must be satisfactorily argued in the cover letter. A manuscript with a cover letter to the editor not addressing the novelty is likely to be rejected without review.