首页> 外文会议>International materials research congress;Symposium on advanced structural materials >Synthesis of Biodegradable Copolymer of Poly(isobutyl vinyl ether)-co-Poly(ε-Caprolactone) using Half-Sandwich Metallocene Catalyst and their Application as Plasticizer for Poly(Vinyl Chloride)
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Synthesis of Biodegradable Copolymer of Poly(isobutyl vinyl ether)-co-Poly(ε-Caprolactone) using Half-Sandwich Metallocene Catalyst and their Application as Plasticizer for Poly(Vinyl Chloride)

机译:半三明治金属茂催化剂合成聚(异丁基乙烯基醚)-共聚(ε-己内酯)可生物降解共聚物及其在聚氯乙烯增塑剂中的应用

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In this work, we studied the synthesis of biodegradable copolymers of the type poly(isobutyl vinyl ether)-co-(e-caprolactone) (PIBVE-co-PCL) using a homogeneous mono-cyclopentadienyltitanium catalyst and methylaluminoxane (MAO) as co-catalyst. These copolymers can also be used as plasticizers for flexible polyvinyl chloride) (PVC), improving its thermal properties. The copolymer PIBVE-co-PCL could be synthesized with a high conversion (>90%). The use of 39 wt.% of the copolymer in the formulation of PVC decreases its glass transition temperature (T_g) by -6.51 °C. By varying the copolymer composition it is possible to obtain PVC with different T_g values that could be used for different applications. A particular application where one could use this type of copolymer is in PVC formulations for the fabrication of blood bags. The toxicity of dioctyl phthalate (DOP), which is the more commonly used plasticizer for PVC, limits the use of these formulations for the mentioned purpose. The PVC plasticized with the biodegradable copolymer showed an increase in the degradation temperature, improving the thermal stability of the PVC formulation in comparison with the phthalates usually used as plasticizers.
机译:在这项工作中,我们研究了使用均相单环戊二烯基钛催化剂和甲基铝氧烷(MAO)作为共聚异丁烯乙烯基醚-共-(ε-己内酯)(PIBVE-co-PCL)型可生物降解共聚物的合成方法。催化剂。这些共聚物还可以用作柔性聚氯乙烯(PVC)的增塑剂,从而改善其热性能。可以高转化率(> 90%)合成共聚物PIBVE-co-PCL。在PVC配方中使用39 wt。%的共聚物可使玻璃化转变温度(T_g)降低-6.51°C。通过改变共聚物组成,可以获得具有不同T_g值的PVC,其可用于不同的应用。可以使用这种类型共聚物的一种特殊应用是在PVC配方中制造血袋。邻苯二甲酸二辛酯(DOP)的毒性,它是PVC中最常用的增塑剂,它限制了这些配方用于上述目的的用途。与通常用作增塑剂的邻苯二甲酸酯相比,用可生物降解的共聚物增塑的PVC的降解温度有所提高,从而改善了PVC配方的热稳定性。

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