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Fabrication of Ag micromaterials by utilizing stress-induced migration

机译:利用应力诱导的迁移制备银微材料

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Silver micromaterials are highly prospected for modern electronic industries, especially due to their high electrical conductivity. Up to now, the formation of Ag nanowires that has been reported is based on chemical techniques. The processes of the chemical techniques are sophisticated, but somewhat complicated. On the other hand, a physical technique for fabricating metallic nanowires in a simple and controlled way by utilizing stress-induced migration has recently been reported. In this approach, it is recognized that the gradient of compressive hydrostatic stress might be the driving force for atomic diffusion. In the technique utilizing stress-induced migration, heating is required and oxide layer is necessary for fabrication of nano/micro materials. When Ag is heated, the key material, namely the oxide layer, decomposes at high temperature. In the present paper, an approach for fabrication of Ag nano/micro materials based on stress-induced migration is proposed, in which SiO2 layer is used as a passivation layer to overcome the drawback of the oxide layer.
机译:银微材料由于其高导电性而在现代电子工业中具有很高的前景。到目前为止,已经报道的银纳米线的形成是基于化学技术的。化学技术的过程很复杂,但是有些复杂。另一方面,近来已经报道了通过利用应力诱导的迁移以简单且可控的方式制造金属纳米线的物理技术。在这种方法中,已经认识到压缩静水压力的梯度可能是原子扩散的驱动力。在利用应力引起的迁移的技术中,需要加热并且氧化层对于纳米/微材料的制造是必需的。当加热Ag时,关键材料,即氧化物层,在高温下分解。本文提出了一种基于应力诱导迁移的Ag纳米/微米材料的制备方法,其中SiO 2 层用作钝化层克服了氧化层的缺点。

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