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首页> 外文期刊>Journal of Applied Polymer Science >Temperature-triggered three-dimensional network formation in graphene-polybutadiene nanocomposite
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Temperature-triggered three-dimensional network formation in graphene-polybutadiene nanocomposite

机译:石墨烯 - 聚丁二烯纳米复合材料中温度触发的三维网络形成

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Since the invention of vulcanization in the early 19th century, the study on potential factors affecting the crosslink network formation and the corresponding changes in the initial physiochemical attributes of elastomer has been the subject of prime interest. Where several investigations highlight the mechanism and kinetics of the crosslink network formation, the exclusive effect of compounding ingredients, such as filler, plasticizer, and anti-oxidant, is still being pursued. In this direction, we report preparation and characterization of cis-1,4-polybutadiene (PB)-graphene (G) nanocomposite and highlight a phenomenon in which graphene induces the spontaneous chemical reactions in the cis-1,4-polybutadiene elastomer matrix triggered at 170 degrees C temperature. PB-G nanocomposites were prepared by a fairly simple solution mixing and precipitation process, and such nanocomposites were analytically investigated using several characterization techniques. The differential scanning calorimetry analysis shows the evidence of reactions via exothermic peak transition at similar to 170 degrees C temperature. Dynamic mechanical thermal analysis and stress-strain analysis suggest improvement in the initial physiochemical attributes of elastomer. The equilibrium swelling study quantifies the network structure that formed during the spontaneous reactions induced by graphene. Nuclear magnetic resonance (H-1-NMR) and Raman spectroscopic analysis suggest clear deviation in the pristine chemical structure of cis-1,4-PB elastomer and graphene, respectively. We believe that the spontaneous chemical reactions led to the formation of a three-dimensional network within the PB elastomer. (c) 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 136, 48209.
机译:自19世纪初的硫化发明以来,研究影响交联网络形成的潜在因素及弹性体初始生理化学属性的相应变化是主要兴趣的主题。在几种研究突出了交联网络形成的机制和动力学的情况下,仍在追求配合成分,例如填料,增塑剂和抗氧化剂的专用效果。在这种方向上,我们报告了CIS-1,4-聚丁二烯(Pb)型纳米复合材料(G)纳米复合材料的制备和表征,并突出了石墨烯诱导顺式-1,4-聚丁二烯弹性体基质中自发化学反应的现象在170℃的温度下。通过相当简单的溶液混合和沉淀方法制备PB-G纳米复合材料,使用几种表征技术分析这些纳米复合材料。差分扫描量热法分析显示通过类似于170℃的温度的放热峰转变的反应的证据。动态机械热分析和应力 - 应变分析表明弹性体初始生理化学属性的改善。平衡膨胀研究量化了在石墨烯诱导的自发反应期间形成的网络结构。核磁共振(H-1-NMR)和拉曼光谱分析表明CIS-1,4-PB弹性体和石墨烯的原始化学结构清楚地偏差。我们认为,自发化学反应导致Pb弹性体内的三维网络形成。 (c)2019 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2019,136,48209。

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