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Giant five-photon absorption from multidimensional core-shell halide perovskite colloidal nanocrystals

机译:多维核-壳卤化物钙钛矿胶体纳米晶体的巨五光子吸收

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摘要

Multiphoton absorption processes enable many technologically important applications, such as in vivo imaging, photodynamic therapy and optical limiting, and so on. Specifically, higher-order nonlinear absorption such as five-photon absorption offers significant advantages of greater spatial confinement, increased penetration depth, reduced autofluorescence, enhanced sensitivity and improved resolution over lower orders in bioimaging. Organic chromophores and conventional semiconductor nanocrystals are leaders in two-/three-photon absorption applications, but face considerable challenges from their small five-photon action cross-sections. Herein, we reveal that the family of halide perovskite colloidal nanocrystals transcend these constraints with highly efficient five-photon-excited upconversion fluorescence—unprecedented for semiconductor nanocrystals. Amazingly, their multidimensional type I (both conduction and valence band edges of core lie within bandgap of shell) core–shell (three-dimensional methylammonium lead bromide/two-dimensional octylammonium lead bromide) perovskite nanocrystals exhibit five-photon action cross-sections that are at least 9 orders larger than state-of-the-art specially designed organic molecules. Importantly, this family of halide perovskite nanocrystals may enable fresh approaches for next-generation multiphoton imaging applications.
机译:多光子吸收过程可实现许多技术上重要的应用,例如体内成像,光动力疗法和光学限制等。具体而言,高阶非线性吸收(如五光子吸收)具有显着的优势,即与生物成像中的低阶相比,具有更大的空间限制,增加的穿透深度,减少的自发荧光,增强的灵敏度和改进的分辨率。有机发色团和常规半导体纳米晶体是两光子/三光子吸收应用的领导者,但由于它们的五光子作用截面小,因此面临巨大挑战。本文中,我们揭示了卤化物钙钛矿胶体纳米晶体家族以高效的五光子激发上转换荧光超越了这些限制,这是半导体纳米晶体所无法比拟的。令人惊讶的是,它们的多维I型(核的传导带和价带边缘都位于壳的带隙内)核-壳(三维甲基溴化铅铅/二维八溴化铅铅)钙钛矿纳米晶体具有五光子作用截面,比最先进的专门设计的有机分子大至少9个数量级。重要的是,该卤化物钙钛矿纳米晶体家族可能为下一代多光子成像应用提供新的方法。

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