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Plasmon bleaching dynamics in colloidal gold-iron oxide nanocrystal heterodimers

机译:胶体金-氧化铁纳米晶体异质二聚体中的等离子漂白动力学

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Colloidal nanocrystal heterodimers composed of a plasmonic and a magnetic domain have been widely studied as potential materials for various applications in nanomedicine, biology, and photocatalysis. One of the most popular nanocrystal heterodimers is represented by a structure made of a Au domain and a iron oxide domain joined together. Understanding the nature of the interface between the two domains in such type of dimer and how this influences the energy relaxation processes is a key issue. Here, we present the first broad-band transient absorption study on gold/iron oxide nanocrystal heterodimers that explains how the energy relaxation is affected by the presence of such interface. We found faster electron-electron and electron-phonon relaxation times for the gold "nested" in the iron oxide domain in the heterodimers with respect to gold "only" nanocrystals, that is, free-standing gold nanocrystals in solution. We relate this effect to the decreased electron screening caused by spill-out of the gold electron distribution at gold/iron oxide interface.
机译:由等离子和磁畴组成的胶体纳米晶体异二聚体已被广泛研究为在纳米医学,生物学和光催化中各种应用的潜在材料。最受欢迎的纳米晶体异二聚体之一是由结合在一起的Au结构域和氧化铁结构域构成的结构。了解此类二聚体中两个域之间的界面性质以及这如何影响能量弛豫过程是一个关键问题。在这里,我们提出了对金/铁氧化物纳米晶体异二聚体的首次宽带瞬态吸收研究,该研究解释了这种界面的存在如何影响能量弛豫。我们发现,相对于“仅”金纳米晶体(即溶液中的自立式金纳米晶体),异二聚体中铁氧化物域中的“嵌套”金具有更快的电子-电子和电子-声子弛豫时间。我们将此效应与由于金/氧化铁界面上的金电子分布溢出而引起的电子屏蔽减少有关。

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