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Influence of the Polyvinyl Pyrrolidone Concentration on Particle Size and Dispersion of ZnS Nanoparticles Synthesized by Microwave Irradiation

机译:聚乙烯吡咯烷酮浓度对微波辐照合成ZnS纳米粒子粒径和分散度的影响

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摘要

Zinc sulfide semiconductor nanoparticles were synthesized in an aqueous solution of polyvinyl pyrrolidone via a simple microwave irradiation method. The effect of the polymer concentration and the type of sulfur source on the particle size and dispersion of the final ZnS nanoparticle product was carefully examined. Microwave heating generally occurs by two main mechanisms: dipolar polarization of water and ionic conduction of precursors. The introduction of the polymer affects the heating rate by restriction of the rotational motion of dipole molecules and immobilization of ions. Consequently, our results show that the presence of the polymer strongly affects the nucleation and growth rates of the ZnS nanoparticles and therefore determines the average particle size and the dispersion. Moreover, we found that PVP adsorbed on the surface of the ZnS nanoparticles by interaction of the C–N and C=O with the nanoparticle’s surface, thereby affording protection from agglomeration by steric hindrance. Generally, with increasing PVP concentration, mono-dispersed colloidal solutions were obtained and at the optimal PVP concentration (5%), sufficiently small size and narrow size distributions were obtained from both sodium sulfide and thioacetamide sulfur sources. Finally, the sulfur source directly influences the reaction mechanism and the final particle morphology, as well as the average size.
机译:通过简单的微波辐射方法在聚乙烯吡咯烷酮的水溶液中合成硫化锌半导体纳米颗粒。仔细检查了聚合物浓度和硫源类型对最终ZnS纳米颗粒产品的粒径和分散度的影响。微波加热通常通过两种主要机制发生:水的偶极极化和前体的离子传导。聚合物的引入通过限制偶极分子的旋转运动和固定离子来影响加热速率。因此,我们的结果表明,聚合物的存在强烈影响ZnS纳米颗粒的形核和生长速率,因此决定了平均粒径和分散度。此外,我们发现PVP通过C–N和C = O与纳米粒子表面的相互作用而吸附在ZnS纳米粒子的表面上,从而提供了防止空间位阻结块的保护。通常,随着PVP浓度的增加,会获得单分散的胶体溶液,并且在最佳PVP浓度(5%)下,从硫化钠和硫代乙酰胺硫源中都可获得足够小的尺寸和狭窄的尺寸分布。最后,硫源直接影响反应机理和最终的颗粒形态以及平均粒径。

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