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首页> 外文期刊>Journal of Materials Science >Roles of in situ surface modification in controlling the growth and crystallization of CaCO3 nanoparticles, and their dispersion in polymeric materials
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Roles of in situ surface modification in controlling the growth and crystallization of CaCO3 nanoparticles, and their dispersion in polymeric materials

机译:原位表面改性在控制CaCO3纳米颗粒的生长和结晶以及它们在聚合物材料中的分散中的作用

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摘要

The in situ surface modification of inorganic nanoparticles (NPs) and its influence on the size, morphology, and particle surface properties is increasingly receiving attention. Control of the size and morphology and perfect dispersion of inorganic NPs in polymer matrices fabricates soft materials with unique optical, electrical, magnetic, gas barrier, self-healing, and thermal and mechanical properties. This study explores the strategy of the in situ modification of inorganic NPs (CaCO3) with cationic and anionic surfactants and the role of in situ modification on the dispersion of these NPs in thermoplastic polymers (poly epsilon-caprolactone, PCL). The surfactants having an appropriate polar head with a high charge density bind onto the crystal's nuclei, protect them against extensive aggregation, and consequently control the size, morphology, and surface properties of the produced NPs. This permits formulation of hybrid materials with enhanced thermal stability and tensile modulus and with a marked increase of the crystallization rate.
机译:无机纳米颗粒(NPs)的原位表面改性及其对尺寸,形态和颗粒表面性质的影响越来越受到关注。控制无机NP在聚合物基体中的大小和形态,以及使其完美分散,可以制造出具有独特的光学,电,磁,阻气,自修复以及热和机械性能的柔软材料。这项研究探索了用阳离子和阴离子表面活性剂原位修饰无机NP(CaCO3)的策略,以及原位修饰对这些NP在热塑性聚合物(聚ε-己内酯,PCL)中的分散作用。具有适当电荷密度高的极性头的表面活性剂结合到晶体的核上,保护它们免受广泛聚集,从而控制所生产NP的大小,形态和表面性质。这允许配制具有增强的热稳定性和拉伸模量并且具有显着增加的结晶速率的杂化材料。

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