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Inter-phase charge and energy transfer in Ruddlesden-Popper 2D perovskites: critical role of the spacing cations

机译:Ruddlesden-popper 2d Perovskites的间相电荷和能量转移:间距阳离子的关键作用

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摘要

Photo-generated charge carrier dynamics in Ruddlesden-Popper 2D perovskites with linear (n-BA) and branched (iso-BA) butylamine as spacing cations have been studied by using transient absorption and time-resolved photoluminescence spectroscopies. Both n-BA and isoBA perovskites consist of mixed-phase 2D quantum wells with various layer thicknesses, where the photo-generated charges undergo interphase charge transfer from thinner quantum wells to thicker ones. By shortening the spacer from n-BA to iso-BA, the transfer rates are significantly increased, which can also diminish the charge accumulation in thin quantum wells induced by the unbalanced electron and hole charge transfer rates. Under high excitation intensity, the shorter spacing cation is found to further facilitate the energy transfer, which can compete with fast high-order carrier recombination and consequently improve the charge transfer efficiency. Intriguingly, we observe the existence of extra bulk 3D phases embedded within isoBA perovskites, which can efficiently collect the confined charges within 2D phases and then transport them with faster carrier mobility and slower recombination rates.
机译:通过使用瞬态吸收和时间分离的光致发光光谱,研究了具有线性(N-Ba)和支链(ISO-BA)和支链的鼠李蛋白和支链(ISO-BA)丁胺的光生成的电荷载体动力学。 N-BA和Isoba Perovskites均由具有各种层厚度的混合相位2D量子阱组成,其中光产生的电荷从较薄的量子孔到更厚的电荷转移。通过将间隔物从N-BA缩短到ISO-BA,转移速率显着增加,这也可以减小由不平衡电子和空穴电荷传递速率引起的薄量子孔中的电荷积聚。在高励磁强度下,发现较短的间隔阳离子进一步促进能量转移,这可以与快速高阶载体重组竞争,从而提高电荷转移效率。有趣的是,我们观察嵌入Isoba Perovskites内的额外散装3D阶段的存在,这可以有效地收集2D阶段内的狭窄电荷,然后以更快的载流子迁移率和较慢的重组率运送它们。

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