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镧系掺杂近红外活性上转换纳米磷光体:基本概念、合成策略及技术应用

Lanthanide Doped Near Infrared Active Upconversion Nanophosphors: Fundamental Concepts, Synthesis Strategies, and Technological Applications.

作者信息

Lingeshwar Reddy Kumbam, Balaji Ramachandran, Kumar Ashish, Krishnan Venkata

机构信息

School of Basic Sciences and Advanced Materials Research Center, Indian Institute of Technology Mandi, Kamand, Mandi, Himachal Pradesh, 175005, India.

出版信息

Small. 2018 Sep;14(37):e1801304. doi: 10.1002/smll.201801304. Epub 2018 Jul 31.

Abstract

Near infrared (NIR) light utilization in a range of current technologies has gained huge significance due to its abundance in nature and nondestructive properties. NIR active lanthanide (Ln) doped upconversion nanomaterials synthesized in controlled shape, size, and surface functionality can be combined with various pertinent materials for extensive applications in diverse fields. Upconversion nanophosphors (UCNP) possess unique abilities, such as deep tissue penetration, enhanced photostability, low toxicity, sharp emission peaks, long anti-Stokes shift, etc., which have bestowed them with prodigious advantages over other conventional luminescent materials. As new generation fluorophores, UCNP have found a wide range of applications in various fields. In this Review, a comprehensive overview of lanthanide doped NIR active UCNP is provided by discussing the fundamental concepts including the different mechanisms proposed for explaining the upconversion processes, followed by the different strategies employed for the synthesis of these materials, and finally the technological applications of UCNP, mainly in the fields of bioimaging, drug delivery, sensing, and photocatalysis by highlighting the recent works in these areas. In addition, a brief note on the applications of UCNP in other fields is also provided along with the summary and future perspectives of these materials.

摘要

由于近红外(NIR)光在自然界中含量丰富且具有无损特性,其在一系列现有技术中的应用具有重大意义。通过控制形状、尺寸和表面功能合成的近红外活性镧系(Ln)掺杂上转换纳米材料,可与各种相关材料结合,在不同领域广泛应用。上转换纳米磷光体(UCNP)具有独特性能,如深层组织穿透性、增强的光稳定性、低毒性、尖锐发射峰、长反斯托克斯位移等,使其相对于其他传统发光材料具有巨大优势。作为新一代荧光团,UCNP在各个领域都有广泛应用。在本综述中,通过讨论包括用于解释上转换过程的不同机制等基本概念,对镧系掺杂近红外活性UCNP进行了全面概述,接着介绍了合成这些材料所采用的不同策略,最后通过突出这些领域的最新研究成果,阐述了UCNP的技术应用,主要涉及生物成像、药物递送、传感和光催化等领域。此外,还简要介绍了UCNP在其他领域的应用以及这些材料的总结和未来展望。

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