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Ultrastable metallic glasses formed on cold substrates

机译:在冷基板上形成的超稳定金属玻璃

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摘要

Vitrification from physical vapor deposition is known to be an efficient way for tuning the kinetic and thermodynamic stability of glasses and significantly improve their properties. There is a general consensus that preparing stable glasses requires the use of high substrate temperatures close to the glass transition one, Tg. Here, we challenge this empirical rule by showing the formation of Zr-based ultrastable metallic glasses (MGs) at room temperature, i.e., with a substrate temperature of only 0.43Tg. By carefully controlling the deposition rate, we can improve the stability of the obtained glasses to higher values. In contrast to conventional quenched glasses, the ultrastable MGs exhibit a large increase of Tg of ∼60 K, stronger resistance against crystallization, and more homogeneous structure with less order at longer distances. Our study circumvents the limitation of substrate temperature for developing ultrastable glasses, and provides deeper insight into glasses stability and their surface dynamics.
机译:已知通过物理气相沉积进行玻璃化是调节玻璃的动力学和热力学稳定性并显着改善其性能的有效方法。人们普遍认为,制备稳定的玻璃需要使用接近玻璃化转变温度Tg的高基材温度。在这里,我们通过展示在室温下,即仅在基板温度仅为0.43Tg的情况下Zr基超稳定金属玻璃(MGs)的形成来挑战这一经验法则。通过仔细控制沉积速率,我们可以将所得玻璃的稳定性提高到更高的值。与传统的淬火玻璃相比,超稳定的MGs的Tg增加了约60 K,抗结晶性更强,结构更均匀,在较长距离下具有较少的有序性。我们的研究规避了基板温度对开发超稳定玻璃的限制,并提供了对玻璃稳定性及其表面动力学的更深入了解。

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