Probing the interface structure of block copolymer compatibilizers in semicrystalline polymer blends

Author:

Tang Xiaomin1ORCID,Liu Changhao1ORCID,Chen Jihua2ORCID,Kumar Rajeev2ORCID,Bowland Christopher C.1ORCID,Saito Tomonori1ORCID,Dial Brent E.1,Keum Jong K.23ORCID,Do Changwoo3ORCID,Chen Xi Chelsea1ORCID

Affiliation:

1. Chemical Sciences Division Oak Ridge National Laboratory Oak Ridge Tennessee USA

2. Center for Nanophase Materials Sciences Oak Ridge National Laboratory Oak Ridge Tennessee USA

3. Neutron Scattering Division Oak Ridge National Laboratory Oak Ridge Tennessee USA

Abstract

AbstractThe use of block copolymers to compatibilize immiscible plastics is an important strategy for upcycling municipal plastic wastes. Multiblock copolymers (MBCPs) have been proven to be more effective compatibilizers than di‐ and tri‐block copolymers. Herein, we probe the interface structure of an effective multiblock copolymer compatibilizer and compare that with an ineffective triblock copolymer (TBCP). The interface activity of the compatibilizers is understood through a combination of small‐angle neutron and x‐ray scatterings (SANS and SAXS), by using deuterated homopolymer matrix and protonated compatibilizers. SANS analysis suggests that the MBCP forms a thicker interface layer (7–9 nm) than the TBCP (0–4 nm). In addition, SANS data seems to point to a stronger tendency for the MBCP to locate at the interface. Both factors contribute to its effectiveness at compatibilizing immiscible homopolymers.

Funder

Oak Ridge National Laboratory

Publisher

Wiley

Reference51 articles.

1. Ellen MacArthur Foundation The New Plastics Economy: Rethinking the future of plastics & catalysing action 2017.

2. Chemical recycling of waste plastics for new materials production

3. Strategies for compatibilization of polymer blends

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