首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Elastic Behavior of Nanoparticle Chain Aggregates (NCA): Effects of Substrate on NCA Stretching and First Observation by a High-Speed Camera
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Elastic Behavior of Nanoparticle Chain Aggregates (NCA): Effects of Substrate on NCA Stretching and First Observation by a High-Speed Camera

机译:纳米粒子链聚集体(NCA)的弹性行为:基质对NCA拉伸和高速相机的首次观察的影响

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摘要

Chain aggregates of approx7 nm titania particles exhibit elastic behavior when observed in the transmission electron microscope (TEM); under tension produced by an expanding hole in the film, these nanoparticle chain aggregates (NCAs) stretch, and when the tension is relaxed, they contract. The film that coats the TEM grid on which the NCAs are deposited has an amorphous carbon side and a Formvar side. When the NCAs are deposited on the carbon side, the strained NCAs detach easily from the carbon layer and stretching does not occur. On the other hand, NCas deposited on the Formvar side exhibit stretching and contraction probably because of the adhesion fo the Formvar (poly(vinyl formal), mol wt 70000-150000) molecules to the ends of the particle chanis. A similar phenomenon may explain the reinforcement of rubbery polymers by particulate fillers. Earlier observations of NCA behavior were made by using a conventional video camera with a speed of 30 frames/s (FPS). This was fast enough to follow the stretching but not the contraction process. An attempt was made to follow contraction using a high-speed camera (9000 FPS). The titania NCA stretched by about 10% and then contracted to 78% of the initial length. Inspection of the aggregate shape showed that chain segments folded after contraction. the length of the NCA oscillated in the direction of motion during stretching (approx2 kHz) and contraction (approx1 kHz).
机译:当在透射电子显微镜(TEM)中观察时,大约7nm二氧化钛颗粒的链骨料表现出弹性行为;在薄膜中的膨胀孔产生的张力下,这些纳米颗粒链聚集体(NCAS)拉伸,并且当张力放宽时,它们合同。涂在其中沉积NCA的TEM网格的薄膜具有无定形碳侧和Formvar侧。当NCA沉积在碳侧时,不会发生应变NCAS易于从碳层和拉伸的脱离。另一方面,NCAS沉积在Formvar侧的表现出伸展和收缩可能是因为Formvar(聚(乙烯基),Mol Wt 700-150000)分子到颗粒嗜尼的末端的粘附性。类似的现象可以通过颗粒填料来解释橡胶状聚合物的加强。通过使用具有30帧/秒(FPS)的速度的传统摄像机进行NCA行为的早期观察。这足以跟随拉伸而不是收缩过程。尝试使用高速相机(9000 FPS)遵循收缩。二氧化钛NCA拉伸约10%,然后收缩到初始长度的78%。检查骨料形状的检查表明,在收缩后折叠的链段。在拉伸(约2kHz)和收缩期间,NCA在运动方向上振荡的长度(约1kHz)。

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