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Thermal Annealing of High cis-1,4-Polybutadiene/Octadecyl Acrylate Blends as a One-Step Process for Fabricating Shape Memory Polymers AITranslate

University of Akron; University of Akron; University of Akron
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Publisher: ACS
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Abstract AITranslate

Blending molecular crystals with a cross-linkable elastomer is an inexpensive, formulation- and processing-friendly route to develop shape memory polymers (SMPs). In this work, a shape memory material consisting of thermally cross-linked, octadecyl acrylate (ODA)-grafted polybutadiene (PB) and free octadecyl acrylate was prepared. High-temperature (175 °C) annealing of a melt-processable blend of PB and ODA results in the ene grafting of a portion of the ODA onto the PB chains producing a side-chain crystalline polymer, while simultaneous cross-linking of the PB produces a cross-linked network. At ODA loadings of 0.66 ODA molecules:PB repeat unit (80 wt % ODA), materials with high shape fixity (>99%) and recovery (>99%) were prepared. Higher shape recovery was measured compared to previously reported peroxide cross-linked PB/ODA blends. Limited blooming of the free ODA was found on stored samples and during shape memory cycling, an improvement compared to other elastomer small molecule blends. These results are discussed in terms of the synthesis, structure, and physical properties of this blend system.

KeyWords AITranslate

ene reaction noctadecyl acrylate polybutadiene polymer blends shape memory polymers
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Basic Information:

DOI:https://doi.org/10.1021/acsapm.3c00319

Chinese Library Classification Number:

Citation Information:

Blending molecular crystals with a cross-linkable elastomer is an inexpensive, formulation- and processing-friendly route to develop shape memory polymers (SMPs). In this work, a shape memory material consisting of thermally cross-linked, octadecyl acrylate (ODA)-grafted polybutadiene (PB) and free octadecyl acrylate was prepared. High-temperature (175 °C) annealing of a melt-processable blend of PB and ODA results in the ene grafting of a portion of the ODA onto the PB chains producing a side-chain crystalline polymer, while simultaneous cross-linking of the PB produces a cross-linked network. At ODA loadings of 0.66 ODA molecules:PB repeat unit (80 wt % ODA), materials with high shape fixity (>99%) and recovery (>99%) were prepared. Higher shape recovery was measured compared to previously reported peroxide cross-linked PB/ODA blends. Limited blooming of the free ODA was found on stored samples and during shape memory cycling, an improvement compared to other elastomer small molecule blends. These results are discussed in terms of the synthesis, structure, and physical properties of this blend system.

quote

GB/T 7714-2015 [1] Sayan Basak, Juan Camilo Marin Angel, Kevin A. Cavicchi. ACS Applied Polymer Materials, 2023(5). DOI:10.1021/acsapm.3c00319.
MLA [1] Sayan Basak, et al., ACS Applied Polymer Materials, no. 5, 2023, https://doi.org/10.1021/acsapm.3c00319.
APA [1] Sayan Basak, Juan Camilo Marin Angel, & Kevin A. Cavicchi. (2023). ACS Applied Polymer Materials(5). https://doi.org/10.1021/acsapm.3c00319
IEEE [1] Sayan Basak, Juan Camilo Marin Angel, and Kevin A. Cavicchi, ACS Applied Polymer Materials, no. 5, 2023, doi: 10.1021/acsapm.3c00319. keywords: {ene reaction;noctadecyl acrylate;polybutadiene;polymer blends;shape memory polymers}