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Versatile cross-linked fatty acid-based polycarbonate networks obtained by thiol-ene coupling reaction

机译:通过硫醇-NEE耦合反应获得的基于多种交联脂肪酸的聚碳酸酯网络

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摘要

Bio-sourced polycarbonate networks have been synthesized from an alkene-functional fatty-acid based polycarbonate precursor. Cross-linked networks were created using the radical thiol-ene coupling reaction. The resulting polycarbonate materials exhibited versatile properties either influenced by the structure of the cross-linker or the cross-linker/olefin unit ratio. Indeed, the storage modulus above the glass transition temperature could be modulated from 0.9 to 8.9 MPa only by changing the type of cross-linker, i.e. 1,9-nonanedithiol vs. 1,4-benzenedimethanethiol. The cross-linker/olefin unit ratio was also shown to largely impact the polycarbonate networks properties. An elongation at break of nearly 200% was reached when a low cross-linker/olefin ratio was applied. Moreover, functional polycarbonate networks bearing pendant thiol groups were obtained when an excess of dithiol was used with respect to olefin groups.
机译:生物源性聚碳酸酯网络已由烯烃官能脂肪酸基聚碳酸酯前体合成。 使用自由基硫醇-NEE耦合反应创建交联网络。 所得的聚碳酸酯材料表现出通过交联剂结构或交联剂/烯烃单位比的影响的通用性质。 实际上,通过改变交联剂的类型,即1,9-壬二醇与1,4-苯并二甲基硫醇,才能在0.9至8.9MPa的储存模量。 交联剂/烯烃单位比也显示在很大程度上影响聚碳酸酯网络性质。 当施加低交联剂/烯烃比时,达到近200%的断裂伸长率。 此外,当与烯烃基团过量使用过量的二硫醇时,获得轴承硫醇基团的功能性聚碳酸酯网络。

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  • 来源
    《RSC Advances》 |2019年第1期|共6页
  • 作者单位

    Univ Bordeaux Lab Chim Polymeres Organ CNRS Bordeaux INP ENSCBP UMR 5629 16 Ave Pey Berland F-33600 Pessac France;

    ITERG F-33600 Pessac France;

    Univ Bordeaux Lab Chim Polymeres Organ CNRS Bordeaux INP ENSCBP UMR 5629 16 Ave Pey Berland F-33600 Pessac France;

    Univ Bordeaux Lab Chim Polymeres Organ CNRS Bordeaux INP ENSCBP UMR 5629 16 Ave Pey Berland F-33600 Pessac France;

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  • 正文语种 eng
  • 中图分类 化学;
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