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碱金属氨溶液中电解质状态与金属状态之间的快速转变。

Rapid flipping between electrolyte and metallic states in ammonia solutions of alkali metals.

作者信息

Vitek Marco, Rončević Igor, Marsalek Ondrej, Schewe H Christian, Jungwirth Pavel

机构信息

Institute of Organic Chemistry and Biochemistry of the Czech Academy of Sciences, Flemingovo nám. 2, 166 10, Prague 6, Czech Republic.

Department of Chemistry, University of Oxford, Chemistry Research Laboratory, Mansfield Road, Oxford, OX1 3TA, UK.

出版信息

Nat Commun. 2025 May 8;16(1):4302. doi: 10.1038/s41467-025-59071-z.

Abstract

Nonmetal-to-metal transitions are among the most fascinating phenomena in material science, associated with strong correlations, large fluctuations, and related features relevant to applications in electronics, spintronics, and optics. Dissolving alkali metals in liquid ammonia results in the formation of solvated electrons, which are localised in dilute solutions but exhibit metallic behaviour at higher concentrations, forming a disordered liquid metal. The electrolyte-to-metal transition in these systems appears to be gradual, but its microscopic origins remain poorly understood. Here, we provide a detailed time-resolved picture of the electrolyte-to-metal transition in solutions of lithium in liquid ammonia, employing ab initio molecular dynamics and many-body perturbation theory, which are validated against photoelectron spectroscopy experiments. We find a rapid flipping between metallic and electrolyte states that persist only on a sub-picosecond timescale within a broad range of concentrations. These flips, occurring within femtoseconds, are characterised by abrupt opening and closing of the band gap, which is connected with only minute changes in the solution structure and the associated electron density.

摘要

非金属到金属的转变是材料科学中最引人入胜的现象之一,与强关联、大波动以及与电子学、自旋电子学和光学应用相关的特征有关。将碱金属溶解在液氨中会导致溶剂化电子的形成,这些电子在稀溶液中是局域化的,但在较高浓度下表现出金属行为,形成无序的液态金属。这些系统中的电解质到金属的转变似乎是渐进的,但其微观起源仍知之甚少。在这里,我们利用从头算分子动力学和多体微扰理论,提供了锂在液氨溶液中电解质到金属转变的详细时间分辨图像,这些理论已通过光电子能谱实验得到验证。我们发现在很宽的浓度范围内,金属态和电解质态之间存在快速翻转,且仅在亚皮秒时间尺度上持续。这些在飞秒内发生的翻转的特征是带隙的突然打开和关闭,这仅与溶液结构和相关电子密度的微小变化有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae6d/12062273/11c0fdfaa1e0/41467_2025_59071_Fig1_HTML.jpg

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