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首页> 外文期刊>Polymer engineering and science >Preparation of Polymer-Based Nanocomposites Composed of Sustainable Organo-Modified Needlelike Nanoparticles and Their Particle Dispersion States in the Matrix
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Preparation of Polymer-Based Nanocomposites Composed of Sustainable Organo-Modified Needlelike Nanoparticles and Their Particle Dispersion States in the Matrix

机译:基于可持续有机改性的纳米粒子组成的聚合物基纳米复合材料的制备及其基质中的颗粒分散状态

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摘要

Polymer-based nanohybrid materials were created using sustainable sepiolite clay composed from ubiquitous elements. Although sepiolite is generally recognized as a fibrous natural clay mineral, it turned out to be an acicular microcrystal because of the organo-modification of the outermost surface. Surface modification was performed using phosphonic acid derivatives containing hydrocarbon chains or fluorocarbon chains. Formation of a bidentate bond enhanced the desorption temperature and made nanocomposite preparation possible by melt compounding with polymers having a high melting point. As a result of organo-modification, amphiphilic sepiolite was obtained, and nanodispersion in an organic solvent was achieved. This technology was useful for detailed evaluation of sepiolite morphology. The nanocomposite of crystalline polymers/organo-modified sepiolites achieved uniform dispersion of these nanofillers in the matrix polymer. The introduction of 1 wt% nanofillers did not impair the transparency of the matrix polymer. As a result, a lamellae structure of the polymer developed, the crystallinity increased, and the mechanical properties improved. In addition, the crystallization temperature was improved, indicating that organo-modified sepiolites may act as a nucleating agent. It was found that sepiolite nanofiller with a highly aggregated tendency can achieve a well-nanodispersed state, even in phase-separable fluoropolymers, by applying fluorocarbon modification. POLYM. ENG. SCI., 2019. (c) 2019 Society of Plastics Engineers
机译:使用由来自普遍存在的元素组成的可持续海泡石粘土来产生聚合物的纳米植物。虽然海硫酸盐通常被认为是纤维天然粘土矿物,但由于最外表面的有机改性,它结果是针状微晶。使用含有烃链或氟碳链的膦酸衍生物进行表面改性。双齿键的形成增强了解吸温度并通过熔融配合使用具有高熔点的聚合物制备纳米复合材料制备。由于有机改性,得到两亲硅胶,并达到有机溶剂中的纳米分散。该技术可用于详细评估海泡石形态。结晶聚合物/有机改性海泡石的纳米复合材料达到了这些纳米填充物在基质聚合物中的均匀分散。引入1wt%纳米填料不会损害基质聚合物的透明度。结果,显着的聚合物的薄片结构,结晶度增加,并且机械性能提高。另外,改善了结晶温度,表明有机改性的海泡石可以作为成核剂。发现通过施加氟碳改性,甚至在相位可分离的含氟聚合物中,具有高度聚集趋势的海泡石纳米填充物即使在相分离的含氟聚合物中也可以实现良好的纳米分离状态。聚合物。 eng。 SCI。,2019年。(c)2019塑料工程师协会

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