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单组分毛发状纳米颗粒聚集体的非各向同性自组装

Nonisotropic Self-Organization of Single-Component Hairy Nanoparticle Assemblies.

作者信息

Koerner Hilmar, Drummy Lawrence F, Benicewicz Brian, Li Yu, Vaia Richard A

机构信息

Air Force Research Laboratory, WPAFB, Dayton, Ohio 45433, United States.

Department of Chemistry and Biochemistry, University of South Carolina, Columbia, South Carolina 29201, United States.

出版信息

ACS Macro Lett. 2013 Aug 20;2(8):670-676. doi: 10.1021/mz4001805. Epub 2013 Jul 18.

Abstract

Solvent-free assemblies of hairy nanoparticles (HNPs) are providing avenues to avoid issues of mixing, agglomeration, and limited inorganic content that plague nanocompositses based on polymer-nanoparticle blending. Here we demonstrate that the order within, and the elongational characteristics of, the neat HNP assembly (aHNP) evolve as the architecture of the polymeric corona in solution transitions from the concentrated (CPB) to semidilute (SDPB) polymer brush regimes (silica nanoparticle: radius = 8 nm with 120 kDa polystyrene grafts at σ = 0.01-0.1 chains/nm). Specifically, local HNP packing adopts a nonisotropic local arrangement at intermediate graft densities where the transition from CPB-to-SDPB in solution is approximately . In concert, the neat HNP assembly responds to viscoelastic elongational deformation in a manner analogous to semicrystalline elastomers. Domain orientation under load and subsequent buckling upon recovery lead to the appearance of two- and four-point small-angle X-ray patterns. The correlation between the corona architecture of the HNP and the physical characteristics of the solvent-free aHNP provides a framework akin to block-copolymers to tune mechanical, optical, and electrical properties of fibers and films via ordered mesoscale morphology.

摘要

无溶剂的毛发状纳米颗粒(HNP)聚集体为避免困扰基于聚合物 - 纳米颗粒共混的纳米复合材料的混合、团聚和无机含量受限等问题提供了途径。在此,我们证明,随着溶液中聚合物冠层结构从浓聚合物刷(CPB)状态转变为半稀聚合物刷(SDPB)状态(二氧化硅纳米颗粒:半径 = 8 nm,在σ = 0.01 - 0.1链/纳米处接枝120 kDa聚苯乙烯),纯HNP聚集体(aHNP)内部的有序性及其拉伸特性会发生演变。具体而言,在溶液中从CPB到SDPB的转变大约发生在中间接枝密度处,此时局部HNP堆积采用非各向同性的局部排列。同时,纯HNP聚集体以类似于半结晶弹性体的方式响应粘弹性拉伸变形。负载下的畴取向以及恢复时随后的屈曲导致出现两点和四点小角X射线图案。HNP的冠层结构与无溶剂aHNP的物理特性之间的相关性提供了一个类似于嵌段共聚物的框架,可通过有序的中尺度形态来调节纤维和薄膜的机械、光学和电学性能。

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