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Strategies for the design of bright upconversion nanoparticles for bioanalytical applications

机译:用于生物分析应用的明亮上转换纳米颗粒的设计策略

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摘要

In recent years upconversion nanoparticles (UCNPs) received great attention because of their outstanding optical properties. Especially in bioanalytical applications this class of materials can overcome limitations of common probes like high background fluorescence or blinking. Nevertheless, the requirements for UCNPs to be applicable in biological samples, e.g. small size, water-dispersibility, excitation at low power density are in contradiction with the demand of high brightness. Therefore, a lot of attention is payed to the enhancement of the upconversion luminescence. This review discuss the recent trends and strategies to boost the brightness of UCNPs, classified in three main directions: a) improving the efficiency of energy absorption by the sensitizer via coupling to plasmonic or photonic structures or via attachment of ligands for light harvesting; b) minimizing non-radiative deactivation by variations in the architecture of UCNPs; and c) changing the excitation wavelength to get bright particles at low excitation power density for applications in aqueous systems. These strategies are critically reviewed including current limitations as well as future perspectives for the design of efficient UCNPs especially for sensing application in biological samples or cells.
机译:近年来,上转换纳米颗粒(UCNPs)由于其出色的光学性能而受到了广泛的关注。特别是在生物分析应用中,这类材料可以克服常见探针的局限性,例如高背景荧光或闪烁。但是,UCNP的要求适用于生物样品,例如小尺寸,水分散性,低功率密度的激发与高亮度的要求矛盾。因此,注意力集中在增强上转换发光上。这篇综述讨论了提高UCNPs亮度的最新趋势和策略,主要分为三个主要方向:a)通过与等离子体或光子结构耦合或通过配体的结合来提高光敏剂吸收能量的效率; b)通过改变UCNP的结构来最大程度地减少非辐射失活; c)改变激发波长,以低激发功率密度得到亮颗粒,用于水性体系。对这些策略进行了严格的审查,包括当前的局限性以及设计高效UCNP的未来前景,特别是在生物样品或细胞中的传感应用。

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