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镧系激活的上转换纳米晶体中的能量转移编辑:新兴应用的工具箱

Energy-Transfer Editing in Lanthanide-Activated Upconversion Nanocrystals: A Toolbox for Emerging Applications.

作者信息

Qin Xian, Xu Jiahui, Wu Yiming, Liu Xiaogang

机构信息

Department of Chemistry, National University of Singapore, 3 Science Drive 3, Singapore 117543, Singapore.

Center for Functional Materials, NUS Suzhou Research Institute, Suzhou, Jiangsu 215123, P. R. China.

出版信息

ACS Cent Sci. 2019 Jan 23;5(1):29-42. doi: 10.1021/acscentsci.8b00827. Epub 2019 Jan 7.

Abstract

Advanced nanoscale synthetic techniques provide a versatile platform for programmable control over the size, morphology, and composition of nanocrystals doped with lanthanide ions. Characteristic upconversion luminescence features originating from the 4f-4f optical transitions of lanthanides can be achieved through predesigned energy transfer pathways, enabling wide applications ranging from ultrasensitive biological detection to advanced spectroscopic instrumentation with high spatiotemporal resolution. Here, we review recent scientific and technological discoveries that have prompted the realization of these peculiar functions of lanthanide-doped upconversion nanocrystals and discuss the mechanistic studies of energy transfer involved in upconversion processes. These advanced schemes include cross relaxation-mediated depletion, multipulse sequential pumping, and nanostructural configuration design. Our emphasis is placed on disruptive technologies such as super-resolution microscopy, optogenetics, nanolasing, and optical anticounterfeiting, which take full advantage of the upconversion nanophenomena in relation to lanthanide-doped nanocrystals.

摘要

先进的纳米合成技术为可编程控制掺杂镧系离子的纳米晶体的尺寸、形态和组成提供了一个通用平台。通过预先设计的能量转移途径,可以实现源自镧系元素4f-4f光学跃迁的特征性上转换发光特性,从而实现从超灵敏生物检测到具有高时空分辨率的先进光谱仪器等广泛应用。在这里,我们回顾了最近促使镧系掺杂上转换纳米晶体实现这些特殊功能的科学和技术发现,并讨论了上转换过程中涉及的能量转移的机理研究。这些先进方案包括交叉弛豫介导的耗尽、多脉冲顺序泵浦和纳米结构配置设计。我们重点关注超分辨率显微镜、光遗传学、纳米激光和光学防伪等颠覆性技术,这些技术充分利用了与镧系掺杂纳米晶体相关的上转换纳米现象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1917/6346627/5afb5d9ddb25/oc-2018-00827w_0001.jpg

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