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Flexible and stretchable metallic glass micro- and nano-structures of tunable properties

机译:可调节性能的柔性且可伸缩的金属玻璃微型和纳米结构

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Flexible and stretchable nanostructures have broad technological applications. Although nanostructures synthesized with metallic glasses, the alloys being of amorphous atomic structure, exhibit superior properties, they are typically too rigid to be used as flexible materials with existing synthesis techniques. In this study we report periodic and crumpled metallic glass nanostructures that can accommodate a large amount of stretching. We demonstrate that their morphologies and characteristic length scale can be well controlled, and that feature sizes as small as similar to 200 nm can be readily achieved. With their integrity maintained, the nanostructures can be stretched to a strain of similar to 100%, leading to broadly tunable properties. The approach is not limited to specific metallic glasses, but is applicable to a wide range of glass-forming alloys. This not only enables metallic glasses to be used under extreme stretching conditions, but also helps in the exploration of new functionalities of glassy materials.
机译:柔性且可伸缩的纳米结构具有广泛的技术应用。尽管用金属玻璃合成的纳米结构,但合金是无定形原子结构,具有优异的性质,它们通常过于刚性,以用作具有现有合成技术的柔性材料。在这项研究中,我们报告了可以适应大量拉伸的定期和皱巴巴的金属玻璃纳米结构。我们证明它们的形态和特征长度可以很好地控制,并且可以容易地实现与200nm一样小的特征尺寸。保持完整性,纳米结构可以拉伸到类似于100%的菌株,导致宽度可调性。该方法不限于特定的金属眼镜,但适用于各种玻璃形成合金。这不仅使金属眼镜能够在极端的拉伸条件下使用,而且有助于探索玻璃材料的新功能。

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