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首页> 外文期刊>Chemistry Letters >Preparation of Nanometer Dispersed Semicrystalline/Amorphous Polymer Pseudo-Anterpenetrating Network Using Supercritical Carbon Dioxide as a Swelling Agent
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Preparation of Nanometer Dispersed Semicrystalline/Amorphous Polymer Pseudo-Anterpenetrating Network Using Supercritical Carbon Dioxide as a Swelling Agent

机译:以超临界二氧化碳为溶胀剂制备纳米分散的半结晶/非晶聚合物拟对映穿透网络

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Novel linear low-density polyethylene/poly(methyl meth-acrylate) (LLDPE/PMMA) pseudo-interpenetrating polymer networks (IPNs) were prepared using supercritical CO2 as a swelling agent. These pseudo-IPNs were formed by the complicated entanglement of the amorphous chain of LLDPE and PMMA chains through controlling the mass gain of PMMA. Small-angle X-ray scattering (SAXS) measurement showed that LLDPE and PMMA were blended at the nanometer level. The thermodynamic miscibility and thermal stability of pseudo-IPNs were evaluated by dynamic viscoelastic analyzer (DVA) and SAXS. The results showed that the LLDPE and PMMA were somewhat thermodynamically miscible, and the structure of LLDPE/PMMA composite with a high mass gain was not easily broken when annealed at temperatures higher than T_m of LLDPE (T_(m,LLDPE))- DVA also showed that they retain high storage modului at temperatures beyond the LLDPE melting transition. Further, the extent of the storage modulus can be controlled through controlling the mass gain of PMMA.
机译:使用超临界CO2作为溶胀剂制备了新型线性低密度聚乙烯/聚甲基丙烯酸甲酯(LLDPE / PMMA)互穿聚合物网络(IPN)。这些伪IPN是通过控制PMMA的质量增益,使LLDPE的非晶链与PMMA链复杂地缠结而形成的。小角X射线散射(SAXS)测量表明,LLDPE和PMMA在纳米级共混。通过动态粘弹性分析仪(DVA)和SAXS评估了伪IPN的热力学混溶性和热稳定性。结果表明,LLDPE和PMMA在热力学上具有一定的混溶性,并且在高于LLDPE的T_m(T_(m,LLDPE))-DVA的温度下退火时,具有高质量增益的LLDPE / PMMA复合材料的结构也不容易破裂。结果表明,它们在超出LLDPE熔融转变温度的条件下仍能保持较高的储能模量。此外,可以通过控制PMMA的质量增益来控制储能模量的程度。

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