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在柔软基底上形成的高密度稳定玻璃。

High-density stable glasses formed on soft substrates.

作者信息

Luo Peng, Wolf Sarah E, Govind Shivajee, Stephens Richard B, Kim Dong Hyup, Chen Cindy Y, Nguyen Truc, Wąsik Patryk, Zhernenkov Mikhail, Mcclimon Brandon, Fakhraai Zahra

机构信息

Department of Chemistry, University of Pennsylvania, Philadelphia, PA, USA.

Department of Chemistry, State University of New York Cortland, Cortland, NY, USA.

出版信息

Nat Mater. 2024 May;23(5):688-694. doi: 10.1038/s41563-024-01828-w. Epub 2024 Feb 27.

Abstract

Enabled by surface-mediated equilibration, physical vapour deposition can create high-density stable glasses comparable with liquid-quenched glasses aged for millions of years. Deposition is often performed at various rates and temperatures on rigid substrates to control the glass properties. Here we demonstrate that on soft, rubbery substrates, surface-mediated equilibration is enhanced up to 170 nm away from the interface, forming stable glasses with densities up to 2.5% higher than liquid-quenched glasses within 2.5 h of deposition. Gaining similar properties on rigid substrates would require 10 million times slower deposition, taking ~3,000 years. Controlling the modulus of the rubbery substrate provides control over the glass structure and density at constant deposition conditions. These results underscore the significance of substrate elasticity in manipulating the properties of the mobile surface layer and thus the glass structure and properties, allowing access to deeper states of the energy landscape without prohibitively slow deposition rates.

摘要

通过表面介导的平衡作用,物理气相沉积能够制造出高密度的稳定玻璃,其性能可与经过数百万年老化的液体淬火玻璃相媲美。沉积过程通常在刚性基板上以不同的速率和温度进行,以控制玻璃的性能。在此,我们证明,在柔软的橡胶状基板上,表面介导的平衡作用在距界面170纳米的范围内得到增强,在沉积2.5小时内即可形成密度比液体淬火玻璃高出2.5%的稳定玻璃。在刚性基板上获得类似的性能则需要沉积速度慢1000万倍,耗时约3000年。在恒定的沉积条件下,控制橡胶状基板的模量能够控制玻璃的结构和密度。这些结果突显了基板弹性在操控移动表面层的性能以及玻璃结构和性能方面的重要性,使得在不过度减缓沉积速率的情况下能够进入能量景观的更深状态。

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