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Zintl Phases as Reactive Precursors for Synthesis of Novel Silicon and Germanium-Based Materials

机译:Zintl相作为反应性前体用于合成新型硅和锗基材料

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摘要

Recent experimental and theoretical work has demonstrated significant potential to tune the properties of silicon and germanium by adjusting the mesostructure, nanostructure, and/or crystalline structure of these group 14 elements. Despite the promise to achieve enhanced functionality with these already technologically important elements, a significant challenge lies in the identification of effective synthetic approaches that can access metastable silicon and germanium-based extended solids with a particular crystal structure or specific nano/meso-structured features. In this context, the class of intermetallic compounds known as Zintl phases has provided a platform for discovery of novel silicon and germanium-based materials. This review highlights some of the ways in which silicon and germanium-based Zintl phases have been utilized as precursors in innovative approaches to synthesize new crystalline modifications, nanoparticles, nanosheets, and mesostructured and nanoporous extended solids with properties that can be very different from the ground states of the elements.
机译:最近的实验和理论研究表明,通过调节这14族元素的介观结构,纳米结构和/或晶体结构,可以极大地调节硅和锗的性能。尽管有希望通过这些已经具有技术重要性的元素来实现增强的功能,但是,一个巨大的挑战仍然是确定有效的合成方法,这些方法可以访问具有特定晶体结构或特定的纳米/介观结构特征的亚稳硅和锗基扩展固体。在这种情况下,称为Zintl相的一类金属间化合物为发现新型硅和锗基材料提供了平台。这篇综述重点介绍了一些基于硅和锗的Zintl相被用作创新方法的前体的方法,这些方法用于合成新的晶体修饰物,纳米颗粒,纳米片以及介孔结构和纳米多孔扩展固体,其性质可能与地面完全不同。元素的状态。

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