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通过玻璃的固-固转变实现单晶生长的演示。

Demonstration of single crystal growth via solid-solid transformation of a glass.

作者信息

Savytskii Dmytro, Knorr Brian, Dierolf Volkmar, Jain Himanshu

机构信息

Materials Science and Engineering Department, Lehigh University, Bethlehem, PA 18015, USA.

Physics Department, Lehigh University, Bethlehem, PA 18015, USA.

出版信息

Sci Rep. 2016 Mar 18;6:23324. doi: 10.1038/srep23324.

Abstract

Many advanced technologies have relied on the availability of single crystals of appropriate material such as silicon for microelectronics or superalloys for turbine blades. Similarly, many promising materials could unleash their full potential if they were available in a single crystal form. However, the current methods are unsuitable for growing single crystals of these oftentimes incongruently melting, unstable or metastable materials. Here we demonstrate a strategy to overcome this hurdle by avoiding the gaseous or liquid phase, and directly converting glass into a single crystal. Specifically, Sb2S3 single crystals are grown in Sb-S-I glasses as an example of this approach. In this first unambiguous demonstration of an all-solid-state glass → crystal transformation, extraneous nucleation is avoided relative to crystal growth via spatially localized laser heating and inclusion of a suitable glass former in the composition. The ability to fabricate patterned single-crystal architecture on a glass surface is demonstrated, providing a new class of micro-structured substrate for low cost epitaxial growth, active planar devices, etc.

摘要

许多先进技术都依赖于合适材料的单晶,比如用于微电子的硅单晶或用于涡轮叶片的超合金单晶。同样,如果许多有前景的材料能以单晶形式获得,它们就能充分发挥其潜力。然而,目前的方法不适用于生长这些通常具有不一致熔化、不稳定或亚稳特性的材料的单晶。在此,我们展示了一种策略,通过避开气相或液相,直接将玻璃转化为单晶来克服这一障碍。具体而言,以在Sb-S-I玻璃中生长Sb2S3单晶为例来说明这种方法。在这首次明确展示的全固态玻璃→晶体转变中,相对于通过空间局部激光加热和在成分中加入合适的玻璃形成剂来实现晶体生长而言,避免了外来成核。我们展示了在玻璃表面制造图案化单晶结构的能力,为低成本外延生长、有源平面器件等提供了一类新型的微结构化衬底。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b23/4796903/513f5e679463/srep23324-f1.jpg

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