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控制上转换纳米粒子的非线性发射以增强超分辨率成像性能。

Controlling the non-linear emission of upconversion nanoparticles to enhance super-resolution imaging performance.

作者信息

De Camillis Simone, Ren Peng, Cao Yueying, Plöschner Martin, Denkova Denitza, Zheng Xianlin, Lu Yiqing, Piper James A

机构信息

ARC Centre of excellence for Nanoscale Biophotonics (CNBP), Department of Physics and Astronomy, Macquarie University, NSW 2109, Australia.

出版信息

Nanoscale. 2020 Oct 15;12(39):20347-20355. doi: 10.1039/d0nr04809g.

Abstract

Upconversion nanoparticles (UCNPs) exhibit unique optical properties such as photo-emission stability, large anti-Stokes shift, and long excited-state lifetimes, allowing significant advances in a broad range of applications from biomedical sensing to super-resolution microscopy. In recent years, progress on nanoparticle synthesis led to the development of many strategies for enhancing their upconversion luminescence, focused in particular on heavy doping of lanthanide ions and core-shell structures. In this article, we investigate the non-linear emission properties of fully Yb-based core-shell UCNPs and their impact on the super-resolution performance of stimulated excitation-depletion (STED) microscopy and super-linear excitation-emission (uSEE) microscopy. Controlling the power-dependent emission curve enables us to relax constraints on the doping concentrations and to reduce the excitation power required for accessing sub-diffraction regimes. We take advantage of this feature to implement multiplexed super-resolution imaging of a two-sample mixture.

摘要

上转换纳米粒子(UCNPs)具有独特的光学性质,如光发射稳定性、大斯托克斯位移和长激发态寿命,这使得从生物医学传感到超分辨率显微镜等广泛应用取得了重大进展。近年来,纳米粒子合成方面的进展导致了许多增强其上转换发光的策略的发展,尤其集中在镧系离子的重掺杂和核壳结构上。在本文中,我们研究了全镱基核壳UCNPs的非线性发射特性及其对受激发射损耗(STED)显微镜和超线性激发-发射(uSEE)显微镜超分辨率性能的影响。控制功率依赖发射曲线使我们能够放宽对掺杂浓度的限制,并降低进入亚衍射区域所需的激发功率。我们利用这一特性实现了对双样品混合物的多重超分辨率成像。

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