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Lignosulfonate interleaved layered double hydroxide: A novel green organoclay for bio-related polymer

机译:木质素磺酸盐交错层状双氢氧化物:一种用于生物相关聚合物的新型绿色有机粘土

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摘要

New organic inorganic layered double hydroxide (LDH) organoclays are assembled through coprecipitation with lignosulfonate (LS) interleaved inorganic host structure sheets. The biopolymer is found to accommodate the interlayer space adopting a bilayer molecular arrangement resulting in a basal spacing of 2.54 nm. However the crystallinity of the resulting bio-organoclay is weak, probably due to the difficulty of the inorganic sheets to be built on amorphous polymer chain, the latter inducing low structural ordering. An organoclay of composition Zn_2Al/LS is subsequently used as filler in three bio-related polyesters, poly(lactic) acid (PLA), poly(butylene) succinate (PBS) and poly(butylene adipate-co-terephthalate) (PBAT). Melt polymer extrusion using 5 wt.% organoclay loading yields polyester nanocomposite with a nanocomposite structure largely intercalated for both PLA and PBS (Ad (expansion) >6 nm) while a non miscible structure is obtained for PBAT. The incorporation of hydrophilic Zn_2Al/LS platelets decreases the water/polymer contact angle of about 10° for the LDH/LS PBAT composite only. A strong increase of the complex viscosity |η*| is observed for both nanocomposites Zn_2Al/LS PLA and PBS compared to the polyester itself. This is explained on the basis of a chain extender behavior of the intercalated Zn_2Al/LS platelets towards polymer chains as evidenced on the Cole Cole representation showing an increase of the real viscosity in the low-ω region. In opposition a strong decrease in |η*| is observed for PBAT, underlining a plasticizing effect of the organoclay filler. Comparatively, the thermal stability of PLA is slightly enhanced with an increase of T_0.5 value while PBS and PBAT bio-nanocomposites degrade at slightly lower temperature.
机译:新型有机无机层状双氢氧化物(LDH)有机粘土是通过与木质素磺酸盐(LS)交错的无机主体结构板共沉淀而组装而成的。发现该生物聚合物容纳采用双层分子排列的层间空间,导致基间距为2.54nm。但是,所得生物有机粘土的结晶度较弱,这可能是由于难以在无定形聚合物链上构建无机片而造成的,后者导致较低的结构有序性。组成为Zn_2Al / LS的有机粘土随后被用作三种生物相关聚酯,聚乳酸(PLA),聚丁二酸丁二酯(PBS)和聚己二酸丁二酯对苯二甲酸(PBAT)的填料。使用5重量%的有机粘土负载量的熔融聚合物挤出产生具有纳米复合结构的聚酯纳米复合材料,该复合材料在PLA和PBS两者中都极大程度地插入(Ad(扩展)> 6nm),而对于PBAT获得了不可混溶的结构。对于LDH / LS PBAT复合材料,亲水性Zn_2Al / LS血小板的结合使水/聚合物的接触角降低约10°。复数粘度|η* |大大增加与聚酯本身相比,两种纳米复合材料Zn_2Al / LS PLA和PBS均能观察到。这是根据嵌入的Zn_2Al / LS血小板对聚合物链的增链剂行为来解释的,这在Cole Cole表示法上得到了证明,表明低ω区的真实粘度增加。相反,|η* |大幅下降对PBAT观察到的结果表明,有机粘土填料具有增塑作用。相比之下,PLA的热稳定性随T_0.5值的增加而略有增强,而PBS和PBAT生物纳米复合材料在较低的温度下降解。

著录项

  • 来源
    《Applied clay science》 |2013年第1期|42-48|共7页
  • 作者单位

    Laboratoire de physico chimie des Materiaux, Catalyse et Environnement, Universite des Sciences et de la Technologie d'Oran - BP 1505 El M'naouer, Oran 3 WOO, Algeria;

    Laboratoire de physico chimie des Materiaux, Catalyse et Environnement, Universite des Sciences et de la Technologie d'Oran - BP 1505 El M'naouer, Oran 3 WOO, Algeria;

    Mines Paris Tech, CEMEF - Centre de Mise en Forme des Materiaux, CNRS UMR 7635, BP 207, I rue Claude Daunesse, 06904 Sophia Antipolis Cedex, France;

    Mines Paris Tech, CEMEF - Centre de Mise en Forme des Materiaux, CNRS UMR 7635, BP 207, I rue Claude Daunesse, 06904 Sophia Antipolis Cedex, France;

    Institut de Chimie de Clermont-Ferrand, ICCF, CNRS, UMR 6096, Universite Blaise Pascal, F-63177 Aubiere, France;

    Institut de Chimie de Clermont-Ferrand, ICCF, CNRS, UMR 6096, Universite Blaise Pascal, F-63177 Aubiere, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    layered double hydroxides; hydrotalcite-like materials; organoclays; polyester bio-nanocomposites; relation dispersion state and rheological properties;

    机译:层状双氢氧化物;类水滑石材料;有机粘土聚酯生物纳米复合材料;关系分散状态与流变性质;

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