4.7 Article

Crystallization and Morphology of Triple Crystalline Polyethylene-b-poly(ethylene oxide)-b-poly(ε-caprolactone) PE-b-PEO-b-PCL Triblock Terpolymers

Journal

POLYMERS
Volume 13, Issue 18, Pages -

Publisher

MDPI
DOI: 10.3390/polym13183133

Keywords

triblock terpolymers; polyethylene (PE); poly(ethylene oxide) (PEO); poly(e-caprolactone) (PCL); tricrystalline spherulites

Funding

  1. MINECO [MAT2017-83014-C2-1-P]
  2. Basque Government [IT1309-19]
  3. European Union [778092]
  4. KAUST
  5. BIODEST project
  6. ALBA synchrotron facility [u2020084441]

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The morphology and crystallization behavior of two triblock terpolymers composed of polymethylene, equivalent to PE, PEO, and PCL were studied. The sequence of crystallization starting with the PE block, followed by the PCL block, and ending with the PEO block was determined. The tricrystalline nature of these materials was confirmed through a combination of DSC, WAXS, and PLOM experiments.
The morphology and crystallization behavior of two triblock terpolymers of polymethylene, equivalent to polyethylene (PE), poly (ethylene oxide) (PEO), and poly (epsilon-caprolactone) (PCL) are studied: PE227.1-b-PEO4615.1-b-PCL3210.4 (T1) and PE379.5-b-PEO348.8-b-PCL297.6 (T2) (superscripts give number average molecular weights in kg/mol and subscripts composition in wt %). The three blocks are potentially crystallizable, and the triple crystalline nature of the samples is investigated. Polyhomologation (C1 polymerization), ring-opening polymerization, and catalyst-switch strategies were combined to synthesize the triblock terpolymers. In addition, the corresponding PE-b-PEO diblock copolymers and PE homopolymers were also analyzed. The crystallization sequence of the blocks was determined via three independent but complementary techniques: differential scanning calorimetry (DSC), in situ SAXS/WAXS (small angle X-ray scattering/wide angle X-ray scattering), and polarized light optical microscopy (PLOM). The two terpolymers (T1 and T2) are weakly phase segregated in the melt according to SAXS. DSC and WAXS results demonstrate that in both triblock terpolymers the crystallization process starts with the PE block, continues with the PCL block, and ends with the PEO block. Hence triple crystalline materials are obtained. The crystallization of the PCL and the PEO block is coincident (i.e., it overlaps); however, WAXS and PLOM experiments can identify both transitions. In addition, PLOM shows a spherulitic morphology for the PE homopolymer and the T1 precursor diblock copolymer, while the other systems appear as non-spherulitic or microspherulitic at the last stage of the crystallization process. The complicated crystallization of tricrystalline triblock terpolymers can only be fully grasped when DSC, WAXS, and PLOM experiments are combined. This knowledge is fundamental to tailor the properties of these complex but fascinating materials.

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