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Defect Engineering: A Path toward Exceeding Perfection

机译:缺陷工程:通往完美的道路

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摘要

Moving to nanoscale is a path to get perfect materials with superior properties. Yet defects, such as stacking faults (SFs), are still forming during the synthesis of nanomaterials and, according to common notion, degrade the properties. Here, we demonstrate the possibility of engineering defects to, surprisingly, achieve mechanical properties beyond those of the corresponding perfect structures. We show that introducing SFs with high density increases the Young’s Modulus and the critical stress under compressive loading of the nanowires above those of a perfect structure. The physics can be explained by the increase in intrinsic strain due to the presence of SFs and overlapping of the corresponding strain fields. We have used the molecular dynamics technique and considered ZnO as our model material due to its technological importance for a wide range of electromechanical applications. The results are consistent with recent experiments and propose a novel approach for the fabrication of stronger materials.
机译:迈向纳米级是获得具有卓越性能的完美材料的途径。然而,在纳米材料的合成过程中仍在形成诸如堆垛层错(SFs)之类的缺陷,并且根据一般观念,这些缺陷会降低性能。在这里,我们证明了工程缺陷的可能性,令人惊讶地实现了超出相应完美结构的机械性能。我们发现,以高密度引入SF会增加纳米线在压缩载荷下的杨氏模量和临界应力,使其高于理想结构。物理学可以解释为由于SF的存在和相应应变场的重叠导致固有应变的增加。我们已经使用分子动力学技术,并且由于ZnO在广泛的机电应用中的技术重要性,因此将其视为模型材料。结果与最近的实验一致,并提出了一种用于制造更坚固材料的新颖方法。

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