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Thermal degradation kinetics and decomposition mechanism of PBSu nanocomposites with silica-nanotubes and strontium hydroxyapatite nanorods

机译:二氧化硅纳米管和羟基磷灰石纳米棒对PBSu纳米复合材料的热降解动力学和分解机理

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摘要

Novel poly(butylene succinate) (PBSu) nanocomposites containing 5 and 20 wt% mesoporous strontium hydroxyapatite nanorods (SrHNRs) and silica nanotubes (SiNTs) were prepared by melt-mixing. A systematic investigation of the thermal stability and decomposition kinetics of PBSu was performed using pyrolysis-gas chromatography-mass spectroscopy (Py-GC-MS) and thermogravimetry (TG). Thorough studies of evolving decomposition compounds along with the isoconversional and model-fitting analysis of mass loss data led to the proposal of a decomposition mechanism for PBSu. Moreover, the effects of SrHNRs and SiNTs on the thermal stability and decomposition kinetics of PBSu were also examined in detail. The complementary use of these techniques revealed that the incorporation of SiNTs in PBSu does not induce significant effects neither on its thermal stability nor on its decomposition mechanism. In contrast, the addition of SrHNRs resulted in the catalysis of the initial decomposition steps of PBSu and also in modified decomposition mechanisms and activation energies. The evolving gaseous products of PBSu and their evolution pattern in the SiNT nanocomposites were the same as in neat PBSu, while they were slightly modified for the SrHNR nanocomposites, confirming the findings from thermogravimetric analysis.
机译:通过熔融混合制备了新型的聚丁二酸丁二醇酯(PBSu)纳米复合材料,该复合材料包含5和20 wt%的介孔羟基羟基磷灰石纳米棒(SrHNRs)和二氧化硅纳米管(SiNTs)。使用热解-气相色谱-质谱(Py-GC-MS)和热重分析(TG)对PBSu的热稳定性和分解动力学进行了系统研究。对不断发展的分解化合物进行全面研究,并进行质量损失数据的等转换和模型拟合分析,从而提出了PBSu分解机理的建议。此外,还详细研究了SrHNRs和SiNTs对PBSu的热稳定性和分解动力学的影响。这些技术的互补使用表明,在PBSu中掺入SiNTs不会对其热稳定性及其分解机理产生显着影响。相比之下,SrHNRs的添加导致PBSu初始分解步骤的催化,并且还导致修饰的分解机理和活化能。 SiNT纳米复合材料中PBSu的逸出气态产物及其演化模式与纯PBSu中相同,而对SrHNR纳米复合材料则稍作修饰,证实了热重分析的发现。

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