论文标题
掺杂纳米仪和石墨烯纳米颗粒的同型聚丙烯复合材料的电弹性特性和缺陷结构
Electrical, elastic properties and defect structures of isotactic polypropylene composites doped with nanographite and graphene nanoparticles
论文作者
论文摘要
导电聚合物在传感器,执行器,电动和光学设备,太阳能电池等中具有广泛的技术应用,以改善其运行性能,机械性能,热,电和光学性能,此类聚合物掺有碳同质纳米填料。 Functionality of the novel nanocomposite polymers may be stipulated by size characteristics of nanoparticles and the polymer, different physical effects like charge transfer in such objects etc. We characterize and analyze structure, elastic, electric properties and of novel polymer nanocomposites, isotactic polypropylene (iPP) with high crystallinity, doped with graphene nanoplates (GNP) and nanographite particles at different concentrations大小约100 nm,基于动态机械分析(DMA),介电光谱,小角度中子散射(SANS)和理论建模的结果。大部分IPP中分形物体聚集的碳NP会改变其机械塑料,弹性和电特性,与原始聚合物相比。我们通过cosserat弹性的概念研究了纳米填料形态的修饰,涉及对线性拓扑缺陷的行为的描述,导致纳米地和GNP的聚集。我们在Cosserat弹性模型的晶格框架上提供了数值模拟,以估计整个复合材料IPP的某些机械特性。
Conducting polymers have wide technological applications in sensors, actuators, electric and optical devices, solar cells etc. To improve their operational performance, mechanical, thermal, electrical and optical properties, such polymers are doped with carbon allotrope nanofillers. Functionality of the novel nanocomposite polymers may be stipulated by size characteristics of nanoparticles and the polymer, different physical effects like charge transfer in such objects etc. We characterize and analyze structure, elastic, electric properties and of novel polymer nanocomposites, isotactic polypropylene (iPP) with high crystallinity, doped with graphene nanoplates (GNP) and nanographite particles at different concentrations and sizes about 100 nm, basing on the results of dynamic mechanical analysis (DMA), dielectric spectroscopy, small-angle neutron scattering (SANS) and theoretical modeling. Carbon NPs aggregated in fractal objects in the bulk of iPP change its mechanical plastic, elastic and electric properties comparing with pristine polymer. We study modification of nanofiller morphology with the concept of Cosserat elasticity which involves description of the behavior of linear topological defects caused aggregation of nanographite and GNPs. We supply our experimental data with numerical simulations on the lattice in frames of the model of Cosserat elasticity to estimate some mechanical characteristics of the whole composite iPP.