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In situ ultra-small-angle X-ray scattering study under uniaxial stretching of colloidal crystals prepared by silica nanoparticles bearing hydrogen-bonding polymer grafts

机译:单轴拉伸胶体晶体的原位超小角X射线散射研究所述胶体晶体由带有氢键聚合物接枝物的二氧化硅纳米粒子制备

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摘要

A molded film of single-component polymer-grafted nanoparticles (SPNP), consisting of a spherical silica core and densely grafted polymer chains bearing hydrogen-bonding side groups capable of physical crosslinking, was investigated by in situ ultra-small-angle X-ray scattering (USAXS) measurement during a uniaxial stretching process. Static USAXS revealed that the molded SPNP formed a highly oriented twinned face-centered cubic (f.c.c.) lattice structure with the [11−1] plane aligned nearly parallel to the film surface in the initial state. Structural analysis of in situ USAXS using a model of uniaxial deformation induced by rearrangement of the nanoparticles revealed that the f.c.c. lattice was distorted in the stretching direction in proportion to the macroscopic strain until the strain reached 35%, and subsequently changed into other f.c.c. lattices with different orientations. The lattice distortion and structural transition behavior corresponded well to the elastic and plastic deformation regimes, respectively, observed in the stress–strain curve. The attractive interaction of the hydrogen bond is considered to form only at the top surface of the shell and then plays an effective role in cross-linking between nanoparticles. The rearrangement mechanism of the nanoparticles is well accounted for by a strong repulsive interaction between the densely grafted polymer shells of neighboring particles.
机译:通过原位超小角度X射线研究了单组分聚合物接枝纳米颗粒(SPNP)的模压膜,该膜由球形二氧化硅核和带有能够物理交联的氢键合侧基的致密接枝聚合物链组成。单轴拉伸过程中的散射(USAXS)测量。静态USAXS揭示,模制SPNP形成了高度定向的孪晶面心立方(f.c.c.)晶格结构,在初始状态下[11-1]平面几乎平行于薄膜表面。使用由纳米粒子重排引起的单轴变形模型对原位USAXS进行结构分析,结果表明f.c.c.晶格在拉伸方向上与宏观应变成比例地变形,直到应变达到35%,然后变为其他f.c.c。不同方向的格子。在应力-应变曲线中观察到的晶格畸变和结构转变行为分别与弹性变形和塑性变形状态非常吻合。认为氢键的吸引相互作用仅在壳的顶表面形成,然后在纳米颗粒之间的交联中起有效作用。纳米粒子的重排机制很好地解释了相邻粒子的密集接枝聚合物壳之间的强排斥作用。

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