Nanocomposites of polyhydroxyurethane with Fe3O4 nanoparticles: Synthesis, shape memory and photothermal properties

IF 3.2 4区 工程技术 Q2 ENGINEERING, CHEMICAL
Muhammad Usman Saeed, Guohua Hang, Jiawei Hu, Yuan Gao, Lei Li, Tao Zhang, Sixun Zheng
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引用次数: 0

Abstract

The nanocomposites of ferroferric oxide (Fe3O4) with polyhydroxyurethane (PHU) were fabricated via a physical mixing approach. This process involved grafting poly(N‐vinyl pyrrolidone) (PVPy) chains onto the surfaces of Fe3O4 nanoparticles via surface‐initiated living radical polymerization. The PVPy‐grafted Fe3O4 nanoparticles were directly incorporated into the precursors of PHUs [i.e., bis(cyclic carbonate) and a trifunctional amine] and the mixtures were cured at high temperatures to form organic–inorganic composites. This method ensured that Fe3O4 nanoparticles were finely dispersed within the PHU matrix through the strong intermolecular hydrogen bonding between PVPy and PHU. Compared to plain PHU network, the nanocomposites had enhanced thermomechanical properties, including higher glass transition temperatures (Tg's) and improved tensile mechanical properties. The inclusion of Fe3O4 nanoparticles also enhanced the shape memory properties of the PHU networks, improving shape recovery rates, fixity of transient shapes, and recovery of the original shapes. In addition, the nanocomposites demonstrated paramagnetic and photothermal properties and the photothermal behavior enabled a non‐contact control of shape recovery.Highlights Poly(N‐vinyl pyrrolidone)‐grafted Fe3O4 nanoparticles were synthesized. Nanocomposites of PHU with Fe3O4 were prepared via a physical blending approach. Incorporation of Fe3O4 resulted in improved thermomechanical properties. The nanocomposites had the photothermal properties.
聚羟基聚氨酯与 Fe3O4 纳米粒子的纳米复合材料:合成、形状记忆和光热性能
氧化铁(Fe3O4)与聚羟基聚氨酯(PHU)的纳米复合材料是通过物理混合方法制成的。这一过程包括通过表面引发的活自由基聚合将聚(N-乙烯基吡咯烷酮)(PVPy)链接枝到氧化铁(Fe3O4)纳米粒子的表面。PVPy 接枝的 Fe3O4 纳米粒子直接与 PHU 的前体(即双(环状碳酸酯)和三官能胺)结合,混合物在高温下固化形成有机-无机复合材料。这种方法通过 PVPy 和 PHU 之间强大的分子间氢键作用,确保了 Fe3O4 纳米粒子在 PHU 基质中的精细分散。与普通 PHU 网络相比,纳米复合材料具有更强的热机械性能,包括更高的玻璃化转变温度(Tg)和更好的拉伸机械性能。加入 Fe3O4 纳米粒子还增强了 PHU 网络的形状记忆特性,提高了形状恢复率、瞬时形状的固定性和原始形状的恢复。此外,纳米复合材料还具有顺磁性和光热特性,光热行为实现了对形状恢复的非接触控制。通过物理混合方法制备了 PHU 与 Fe3O4 的纳米复合材料。Fe3O4的加入改善了热力学性能。纳米复合材料还具有光热性能。
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来源期刊
Polymer Engineering and Science
Polymer Engineering and Science 工程技术-高分子科学
CiteScore
5.40
自引率
18.80%
发文量
329
审稿时长
3.7 months
期刊介绍: For more than 30 years, Polymer Engineering & Science has been one of the most highly regarded journals in the field, serving as a forum for authors of treatises on the cutting edge of polymer science and technology. The importance of PE&S is underscored by the frequent rate at which its articles are cited, especially by other publications - literally thousand of times a year. Engineers, researchers, technicians, and academicians worldwide are looking to PE&S for the valuable information they need. There are special issues compiled by distinguished guest editors. These contain proceedings of symposia on such diverse topics as polyblends, mechanics of plastics and polymer welding.
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