首页> 外文期刊>Polymer Degradation and Stability >Synergistic effect of complexes of ethylenediamine double maleamic acid radical and lanthanum (Ⅲ) with pentaerythritol on the thermal stability of poly(vinyl chloride)
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Synergistic effect of complexes of ethylenediamine double maleamic acid radical and lanthanum (Ⅲ) with pentaerythritol on the thermal stability of poly(vinyl chloride)

机译:乙二胺双马来酰胺酸自由基和镧(Ⅲ)与季戊四醇的配合物对聚氯乙烯热稳定性的协同作用

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摘要

The basic complex ([LaL·OH·OH_2], abbreviated as LaL) was firstly synthesized by maleic anhydride, ethylenediamine, sodium hydroxide and lanthanum chloride. Its structure was characterized by Fourier infrared spectrum (FTIR), elemental analysis, nuclear magnetism resonances (NMR) and thermogravi-metric analysis (TGA). The obtained LaL was used as a thermal stabilizer on polyvinyl chloride (PVC) and the stabilization effect was evaluated by TGA, Congo red test and discoloration test. Moreover, LaL as a co-stabilizer mixed with Calcium stearate (CaSt_2), Zinc stearate (ZnSt_2), and pentaerythritol (PE) in different ratios for polyvinyl chloride (PVC) at 180 ℃ in air was also investigated. The results indicated that LaL/PE co-stabilizer presented excellent synergistic effect and obvious improvement of stabilization to PVC compared with the others. When the ratio of LaL and PE was 1, the stability time ranged from 6 to 83 min, and had a remarkable improvement in the initial color for PVC. Compared with the pure PVC sample, the reaction energy E_a of LaL/PE/PVC sample in N_2 atmosphere increased from 123.50 kJ mol~(-1) to 161.01 kJ mol~(-1), and that of in air atmosphere increased from 115.90 kJ mol~(-1) to 154.48 kJ mol~(-1). What's more, It could be found that when using LaL/PE/PVC as stabilizer, the temperature of initial degradation (T_(onset)) of each stage in N_2 and air atmosphere occurred at higher values of temperature than other PVC samples, which was further ascertained that LaL/PE is an excellent thermal stabilizer for PVC. Simultaneously, the possible degradation mechanism and synergistic stabilization of LaL/PE co-stabilizer were also investigated by TG-FTIR analysis.
机译:首先由马来酸酐,乙二胺,氢氧化钠和氯化镧合成了碱性配合物([LaL·OH·OH_2],缩写为LaL)。通过傅立叶红外光谱(FTIR),元素分析,核磁共振波谱(NMR)和热重分析(TGA)对其结构进行了表征。将获得的LaL用作聚氯乙烯(PVC)上的热稳定剂,并通过TGA,刚果红试验和变色试验评价稳定效果。此外,还研究了LaL作为共稳定剂与硬脂酸钙(CaSt_2),硬脂酸锌(ZnSt_2)和季戊四醇(PE)在180℃的空气中以不同比例混合的情况。结果表明,与其他相比,LaL / PE共稳定剂具有优异的协同作用,对PVC的稳定作用明显改善。当LaL和PE的比例为1时,稳定时间为6到83分钟,并且PVC的初始颜色有显着改善。与纯PVC样品相比,LaL / PE / PVC样品在N_2气氛中的反应能E_a从123.50 kJ mol〜(-1)增加到161.01 kJ mol〜(-1),在空气中的反应能E_a从115.90增加kJ mol〜(-1)至154.48 kJ mol〜(-1)。此外,可以发现,当使用LaL / PE / PVC作为稳定剂时,N_2和空气中每个阶段的初始降解温度(T_(起始))都比其他PVC样品的温度高。进一步确定LaL / PE是PVC的优异热稳定剂。同时,通过TG-FTIR分析,研究了LaL / PE共稳定剂可能的降解机理和协同稳定作用。

著录项

  • 来源
    《Polymer Degradation and Stability》 |2017年第6期|176-193|共18页
  • 作者单位

    Polymer Research Institute, College of Chemistry and Chemical Engineering of Xi'an, University of Science and Technology, Xi'an 710054, China;

    Polymer Research Institute, College of Chemistry and Chemical Engineering of Xi'an, University of Science and Technology, Xi'an 710054, China;

    Polymer Research Institute, College of Chemistry and Chemical Engineering of Xi'an, University of Science and Technology, Xi'an 710054, China;

    Polymer Research Institute, College of Chemistry and Chemical Engineering of Xi'an, University of Science and Technology, Xi'an 710054, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ethylenediamine double maleamic acid (IT); Lanthanum (III); Polyvinyl chloride (PVC); Synergistic effect; Heat stabilizer;

    机译:乙二胺双马来酸(IT);镧(III);聚氯乙烯(PVC);协同效应;热稳定剂;

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