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Photothermal Nanoparticle Initiation Enables Radical Polymerization and Yields Unique, Uniform Microfibers with Broad Spectrum Light

机译:光热纳米颗粒起始使自由基聚合能够产生独特的,均匀的微纤维,具有广谱光

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Photothermal processes are utilized across a variety of fields, from separations to medicine, and are an area of active research. Herein, the action of a solar simulator upon carbon black nanoparticles is shown to result in photothermally initiated chain-growth polymerization of methyl acrylate, butyl acrylate, and methyl methacrylate initiated by benzoyl peroxide. With use of methyl acrylate as the model system, products from this reaction are shown to be apparently indistinguishable on the molecular level, but result in unique microstructures relative to the thermal controls. The relative contribution of bands of the UV/visible spectrum to the polymerization initiation show that red/infrared wavelengths are most important for the initiation to occur. Kinetic analysis of the initiator homolysis indicate that the apparent reaction rate is accelerated in the photothermal condition.
机译:光热过程在各种田地中使用,从分离到医学,是一个积极研究的领域。 这里,显示炭黑纳米颗粒上的太阳能模拟器的作用被示出为导致由苯甲酰基过氧化苯甲酰基甲酯,丙烯酸丁酯和甲基丙烯酸甲酯的光热引发的链生长聚合。 通过使用丙烯酸甲酯作为模型系统,从该反应的产品显示出在分子水平上显然是难以区分的,但导致相对于热控制的独特微观结构。 UV /可见光谱带对聚合引发的相对贡献表明,红色/红外波长对于发生的启动是最重要的。 引发剂均相的动力学分析表明表观反应速率在光热条件下加速。

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