Suppr超能文献

无溶剂纳米颗粒-有机杂化材料共混物的结构因子:密度泛函理论与小角X射线散射

Structure factor of blends of solvent-free nanoparticle-organic hybrid materials: density-functional theory and small angle X-ray scattering.

作者信息

Yu Hsiu-Yu, Srivastava Samanvaya, Archer Lynden A, Koch Donald L

机构信息

School of Chemical and Biomolecular Engineering, Cornell University, Ithaca, New York 14853, USA.

出版信息

Soft Matter. 2014 Dec 7;10(45):9120-35. doi: 10.1039/c4sm01722f.

Abstract

We investigate the static structure factor S(q) of solvent-free nanoparticle-organic hybrid materials consisting of silica nanocores and space-filling polyethylene glycol coronas using a density-functional theory and small angle X-ray scattering measurements. The theory considers a bidisperse suspension of hard spheres with different radii and tethered bead-spring oligomers with different grafting densities to approximate the polydispersity effects in experiments. The experimental systems studied include pure samples with different silica core volume fractions and the associated mean corona grafting densities, and blends with different mixing ratios of the pure samples, in order to introduce varying polydispersity of corona grafting density. Our scattering experiments and theory show that, compared to the hard-sphere suspension with the same core volume fraction, S(q) for pure samples exhibit both substantially smaller values at small q and stronger particle correlations corresponding to a larger effective hard core at large q, indicating that the tethered incompressible oligomers enforce a more uniform particle distribution, and the densely grafted brush gives rise to an additional exclusionary effect between the nanoparticles. According to the theory, polydispersity in the oligomer grafting density controls the deviation of S(q) from the monodisperse system at smaller q, and the interplay of the enhanced effective core size and the entropic attraction among the particles is responsible for complex variations in the particle correlations at larger q. The successful comparison between the predictions and the measurements for the blends further suggests that S(q) can be used to assess the uniformity of grafting density in polymer-grafted nanoparticle materials.

摘要

我们使用密度泛函理论和小角X射线散射测量方法,研究了由二氧化硅纳米核和空间填充聚乙二醇冠层组成的无溶剂纳米颗粒-有机杂化材料的静态结构因子S(q)。该理论考虑了具有不同半径的硬球和具有不同接枝密度的束缚珠-弹簧低聚物的双分散悬浮液,以近似实验中的多分散效应。所研究的实验系统包括具有不同二氧化硅核体积分数和相关平均冠层接枝密度的纯样品,以及具有不同纯样品混合比的共混物,以便引入不同的冠层接枝密度多分散性。我们的散射实验和理论表明,与具有相同核体积分数的硬球悬浮液相比,纯样品的S(q)在小q时显示出明显较小的值,在大q时对应于更大的有效硬核,表明束缚的不可压缩低聚物使颗粒分布更均匀,并且密集接枝的刷状结构在纳米颗粒之间产生了额外的排斥效应。根据该理论,低聚物接枝密度的多分散性在较小q时控制S(q)与单分散系统的偏差,并且有效核心尺寸的增加与颗粒之间的熵吸引力的相互作用导致在较大q时颗粒相关性的复杂变化。共混物预测值与测量值之间的成功比较进一步表明,S(q)可用于评估聚合物接枝纳米颗粒材料中接枝密度的均匀性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验