4.6 Article

Preparation of core/shell organic-inorganic hybrid polymer nanoparticles and their application to toughening poly(methyl methacrylate)

期刊

RSC ADVANCES
卷 11, 期 54, 页码 34036-34047

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ROYAL SOC CHEMISTRY
DOI: 10.1039/d1ra03880j

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资金

  1. Project of the State Key Laboratory of Environment-Friendly Energy Materials, Southwest University of Science and Technology [17FKSY0102, 18FKSY0206, 20fksy03]
  2. Sichuan Civil-Military Integration Institute

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By utilizing core/shell organic-inorganic hybrid polymer nanoparticles to toughen PMMA, incorporating silicone as a toughening agent and chain extender enhances the mechanical properties of PMMA/ASA alloys, particularly with significantly improved impact strength and elongation at break after adding silicone-modified ASA.
On account of the utility of poly(methyl methacrylate) (PMMA) as a glass substitute, toughening of PMMA has attracted significant attention. Brittle failure can often be avoided by incorporating a small fraction of filler particles. Core-shell composite particles composed of a rubbery core and a glassy shell have recently attracted interest as a toughening agent for brittle polymers. Here, core/shell organic-inorganic hybrid polymer nanoparticles (Si-ASA HPNs) with a silicone-modified butyl acrylate copolymer (PBA) core and a styrene-acrylonitrile copolymer (SAN) shell were used to toughen PMMA. Silicone plays dual roles as a compatibilizer and a chain extender, and it not only improves interfacial adhesion between the PBA particles and SAN copolymer, but it also increases chain entanglement of poly(acrylonitrile-styrene-acrylate) (ASA). The mechanical properties of the PMMA/ASA alloys strongly depend on the Si content, and the impact strength and elongation at break greatly improve when silicone-modified ASA is added. However, this is accompanied by loss of rigidity. Specifically, the PMMA/ASA-2 composite exhibits a good balance between toughness and rigidity, indicating that ASA-2 with 5 wt% KH570 is the most suitable impact modifier. This research provides a facile and practical method to overcome the shortcomings of ASA and promote its application in a wider range of fields.

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