Deformation Behavior of Polystyrene-Grafted Nanoparticle Assemblies with Low Grafting Density

Deformation Behavior of Polystyrene-Grafted Nanoparticle Assemblies with Low Grafting Density
复制标题

DOI:
10.1021/acs.macromol.8b01524
复制
发表时间:
2018-09-25
期刊:
影响因子:
5.5
通讯作者:
Vaia, Richard A.
Vaia, Richard A.
中科院分区:
化学1区
文献类型:
--
作者:
Jiao, Yang;Tibbits, Andrew;Vaia, Richard A.

文献摘要

被引文献

相似文献

无基质、聚合物接枝的纳米颗粒(PGN)组件显示出广泛的结构、光子和电气应用前景。我们研究了低接枝密度(Sigma < 0.15链/nm(2))下聚苯乙烯接枝Fe3O4 (Fe3O4- ps)组件的模量、屈服强度和裂纹。从起皱-开裂方法(WCM)中,我们发现模量(E)和屈服应力(sigma(y))与纳米级薄膜厚度(70 < h(f) < 250 nm)和接枝分子量(30 kDa < MW < 370 kDa)无关,并且与有效介质理论的预测非常吻合。此外,TEM的薄膜开裂观察表明,无基体PGN组件的最大变形能力有两个临界长度尺度:(1)PGN核心尺寸应小于开裂微观结构的临界长度尺度;(2)邻近缠结优化为最低接枝长度(N),其中PGN结构具有中等接枝密度(r(0)Sigma(0.5)近似于3-6,N/N-e近似于4-6)。这些发现为优化设计提供了基础,同时最大化了PGN薄膜组件的无机体积分数、可加工性和机械稳健性。
Matrix-free, polymer-grafted nanoparticle (PGN) assemblies show promise for a wide array of structural, photonic, and electrical applications. We examine the modulus, yield strength, and crazing of assemblies of polystyrene grafted Fe3O4 (Fe3O4-PS) at low graft density (Sigma < 0.15 chains/nm(2)) where chain entanglements are maximized. From the wrinkling-cracking method (WCM) we show that modulus (E) and yield stress (sigma(y) ) are independent of nanoscale film thickness (70 < h(f) < 250 nm) and graft molecular weight (30 kDa < MW < 370 kDa) and in good agreement with predictions from effective medium theory. Furthermore, thin film craze observations from TEM imply two critical length scales for maximum deformability of matrix-free PGN assemblies: (1) PGN core size should be less than the critical length scale of the craze microstructure, and (2) near-neighbor entanglements are optimized for the lowest graft length (N) where the PGN architecture exhibit intermediate graft densities (r(0)Sigma(0.5) similar to 3-6 and N/N-e similar to 4-6). These findings provide a foundation for optimizing designs that simultaneously maximize inorganic volume fraction, processability, and mechanical robustness for PGN thin film assemblies.