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通过镁掺杂策略实现纳米磷光体中与尺寸无关的近红外持续发光增强

Size-independent boosting of near-infrared persistent luminescence in nano-phosphors via a magnesium doping strategy.

作者信息

Yan Li-Xia, Yan Zhu-Ying, Zhao Xu, Chen Li-Jian, Liu Tian-Xi, Yan Xiu-Ping

机构信息

State Key Laboratory of Food Science and Resources, Jiangnan University, Wuxi 214122, China; International Joint Laboratory on Food Safety, Jiangnan University, Wuxi 214122, China; Institute of Analytical Food Safety, School of Food Science and Technology, Jiangnan University, Wuxi 214122, China.

Analysis and Testing Center, Jiangnan University, Wuxi 214122, China.

出版信息

J Colloid Interface Sci. 2024 May 15;662:11-18. doi: 10.1016/j.jcis.2024.02.008. Epub 2024 Feb 6.

Abstract

Near-infrared (NIR)-emitting persistent luminescence nanoparticles (PLNPs) are ideal optical imaging contrast reagents characterized by autofluorescence-free optical imaging for their frontier applications in long-term bioimaging. Preparation of uniform small-sized PLNPs with excellent luminescence performance is crucial for biomedical applications, but challenging. Here, we report a facile magnesium doping strategy to achieve size-independent boost of NIR persistent luminescence in typical and most concerned ZnGaO:Cr PLNPs. This strategy relies on the doping of Mg ions that with similar size of Zn ions in the host lattice matrix, and concomitant to the electron traps tailoring tuned by varying the feed ratio of Mg. The optimum Mg-doped PLNPs give a long afterglow time (signal-to-noise ratio (SNR) = 31.6 at 30 d) without changing the desirable uniform sub-10 nm size of the original nanocrystals. The appropriate increase of the depth and concentration of electron trap contribute jointly to the enhancement of lifetime (488 % longer, 20.57 s) and afterglow time for 700 nm persistent luminescence. Meanwhile, these PLNPs keep the original excellent rechargeability and promote over 60 times increase of SNR in renewable in vivo imaging. This simple strategy provides a basis for new opportunities to address the critical challenge of effective optical performance boost in small-sized PLNPs.

摘要

近红外(NIR)发射的持久性发光纳米颗粒(PLNPs)是理想的光学成像造影剂,因其在长期生物成像中的前沿应用而具有无自发荧光的光学成像特性。制备具有优异发光性能的均匀小尺寸PLNPs对生物医学应用至关重要,但具有挑战性。在此,我们报告了一种简便的镁掺杂策略,以在典型且最受关注的ZnGaO:Cr PLNPs中实现与尺寸无关的近红外持久性发光增强。该策略依赖于在主体晶格基质中掺杂与锌离子尺寸相似的镁离子,并通过改变镁的进料比来调整电子陷阱。最佳的镁掺杂PLNPs具有长余辉时间(30天时信噪比(SNR)= 31.6),同时不改变原始纳米晶体所需的均匀亚10纳米尺寸。电子陷阱深度和浓度的适当增加共同有助于延长寿命(延长488%,达到20.57秒)和700纳米持久性发光的余辉时间。同时,这些PLNPs保持了原有的优异可再充电性,并在可再生体内成像中使SNR提高了60倍以上。这种简单的策略为解决小尺寸PLNPs有效光学性能提升这一关键挑战提供了新机遇。

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