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上转换镧系掺杂纳米晶体中光致发光的上升与衰减

Rise and Decay of Photoluminescence in Upconverting Lanthanide-Doped Nanocrystals.

作者信息

Vonk Sander J W, Maris J J Erik, Dekker Ayla J H, de Wit Jur W, van Swieten Thomas P, Cocina Ario, Rabouw Freddy T

机构信息

Soft Condensed Matter & Biophysics, Debye Institute for Nanomaterials Science, Utrecht University, Princetonplein 1, 3584 CC Utrecht, The Netherlands.

Inorganic Chemistry & Catalysis, Debye Institute for Nanomaterials Science & Institute for Sustainable and Circular Chemistry, Utrecht University, Universiteitsweg 99, 3584 CG Utrecht, The Netherlands.

出版信息

ACS Nano. 2024 Oct 15;18(41):28325-28334. doi: 10.1021/acsnano.4c09945. Epub 2024 Oct 5.

Abstract

Nanocrystals (NCs) doped with lanthanides are capable of efficient photon upconversion, i.e., absorbing long-wavelength light and emitting shorter-wavelength light. The internal processes that enable upconversion are a complex network of electronic transitions within and energy transfer between dopant centers. In this work, we study the rise and decay dynamics of upconversion emission from β-NaYF NCs codoped with Er and Yb. The rise dynamics of the red and green upconverted emissions are nonlinear, reflecting the nonlinear nature of upconversion and revealing the mechanisms that populate the emitting states. The excited-state decay dynamics are nonexponential. We unravel the underlying decay pathways using photonic experiments. These reveal the contributions of different upconversion pathways visually, as each pathway exhibits a distinct response to systematic variation of the local density of optical states. Moreover, the effect of the local density of optical states on core-only NCs is qualitatively different from core-shell NCs. This is due to the different balance between feeding and decay of the electronic levels that produce upconverted emission. The understanding of the upconversion dynamics provided here could lead to better imaging and sensing methods relying on upconversion lifetimes or guide the rational optimization of the dopant concentrations for brighter upconversion.

摘要

掺杂镧系元素的纳米晶体(NCs)能够实现高效的光子上转换,即吸收长波长光并发射较短波长光。实现上转换的内部过程是掺杂剂中心内部复杂的电子跃迁网络以及它们之间的能量转移。在这项工作中,我们研究了共掺杂铒(Er)和镱(Yb)的β-NaYF纳米晶体上转换发射的上升和衰减动力学。红色和绿色上转换发射的上升动力学是非线性的,反映了上转换的非线性本质,并揭示了产生发射态的机制。激发态衰减动力学是非指数性的。我们通过光子实验揭示了潜在的衰减途径。这些实验直观地展示了不同上转换途径的贡献,因为每种途径对光学态局部密度的系统变化都表现出独特的响应。此外,光学态局部密度对仅含核心的纳米晶体的影响与核壳纳米晶体在性质上有所不同。这是由于产生上转换发射的电子能级的注入和衰减之间的平衡不同所致。这里提供的对上转换动力学的理解可能会带来基于上转换寿命的更好的成像和传感方法,或者指导合理优化掺杂剂浓度以实现更亮的上转换。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f02/11483940/31c1f0a78b9b/nn4c09945_0001.jpg

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