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赤铁矿与铝之间氧化还原反应的时间分辨化学选择性光谱研究

Time-resolved chemically-selective spectroscopic investigation of the redox reaction between hematite and aluminium.

作者信息

Paltanin Ettore, Pelli Cresi Jacopo S, Principi Emiliano, Lee Wonseok, Bencivenga Filippo, De Angelis Dario, Foglia Laura, Garzella David, Kurdi Gabor, Manfredda Michele, Naumenko Denys, Simoncig Alberto, Cushing Scott K, Mincigrucci Riccardo, Masciovecchio Claudio

机构信息

Elettra-Sincrotrone Trieste S.C.p.A., 34149, Basovizza, Trieste, Italy.

Dipartimento di Fisica, Università degli Studi di Trieste, 34127, Trieste, Italy.

出版信息

Nat Commun. 2025 Aug 7;16(1):7282. doi: 10.1038/s41467-025-62436-z.

Abstract

Thermite reactions -highly energetic redox processes between a metal and an oxide-are used in welding, propulsion, and the fabrication of advanced materials. When reduced to the nanoscale, these reactions exhibit enhanced energetic performance, but their ultrafast dynamics remain poorly understood. Gaining insight into charge transfer during these processes is essential for advancing applications in energy conversion and materials design. Here we show that the reaction between aluminium and hematite, a common iron oxide, can be tracked with femtosecond resolution using extreme ultraviolet (EUV) time-resolved absorption spectroscopy at the Fe M and Al L edges. By exciting the system with an ultrashort optical pulse and probing element-specific absorption changes, we observe an early spectral shift that reveals the formation of localized charge carriers (polarons). Comparing samples with different supporting substrates highlights ultrafast electron transfer from aluminium to hematite. These results demonstrate an approach to investigating charge flow in energetic materials and provide a basis for studying fast chemical reactions with chemical specificity.

摘要

铝热反应——金属与氧化物之间的高能氧化还原过程——被用于焊接、推进以及先进材料的制造。当缩小到纳米尺度时,这些反应展现出增强的能量性能,但其超快动力学仍知之甚少。深入了解这些过程中的电荷转移对于推动能量转换和材料设计方面的应用至关重要。在此,我们表明,使用极紫外(EUV)时间分辨吸收光谱在铁的M边和铝的L边,能够以飞秒分辨率追踪铝与赤铁矿(一种常见的氧化铁)之间的反应。通过用超短光脉冲激发该系统并探测特定元素的吸收变化,我们观察到一个早期光谱位移,它揭示了局域电荷载流子(极化子)的形成。比较具有不同支撑衬底的样品突出了从铝到赤铁矿的超快电子转移。这些结果展示了一种研究含能材料中电荷流动的方法,并为以化学特异性研究快速化学反应提供了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0780/12332039/de3c05977f4e/41467_2025_62436_Fig1_HTML.jpg

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