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Spotlight on ultrasonic fracture behaviour of nanowires: their size-dependent effect and prospect for controllable functional modification

机译:纳米线超声断裂行为的聚光灯:可控功能改性的尺寸依赖效应和前景

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Ultrasonic deformation and even fracture of one-dimensional nanomaterials usually occur under sonication, which is likely to have a significant effect on their physical and chemical properties. However, this process and the mechanism underlain are still unknown and yet to be found out. Herein, we establish a ‘bubble-jet impact’ model to study the specific behaviour of fracture evolution of nanowires in sonication processing. By recording the plastic deformation and absorbency of certain sonicated nanowires, e.g. , Ag and Cu, a strong size-dependent breakage induced by the bubble-jet is well validated, which shows that relatively long nanowires tend to fracture by bending while short or medium-length nanowires, as fractured remainders of long ones, have the inclination to be tensile broken. The transition point between the two types of fractures has also been discovered. Our results not only provide guidelines for ultrasonic dispersion, but also pioneer a possible way for controllable functional modification of one-dimensional nanomaterials.
机译:超声变形甚至均匀的一维纳米材料的裂缝通常在超声处理下发生,这可能对其物理和化学性质具有显着影响。但是,这个过程和濒临介绍的机制仍然是未知的,尚未发现。这里,我们建立了“泡沫喷射冲击”模型,以研究纳米线在超声处理中的骨折演化的具体行为。通过记录某些超声处理纳米线的塑性变形和吸收性,例如, ,Ag和Cu,由气泡喷射诱导的强大依赖性断裂良好验证,这表明相对长的纳米线倾向于通过弯曲而短或中长度纳米线,作为长的裂缝剩余物具有倾斜度要张力破碎。也发现了两种类型的骨折之间的过渡点。我们的结果不仅为超声波分散提供了指导性,而且还提供了一种可以控制一维纳米材料的可控功能改性的可能方法。

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