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An Upconversion Nanoparticle with Orthogonal Emissions Using Dual NIR Excitations for Controlled Two-Way Photoswitching

机译:具有双重发射的正交发射的具有正交发射的上转换纳米粒子用于受控的双向光电开关

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摘要

Developing multicolor upconversion nanoparticles (UCNPs) with the capability of regulating their emission wavelengths in the UV to visible range in response to external stimuli can offer more dynamic platforms for applications in high-resolution bioimaging, multicolor barcoding, and driving multiple important photochemical reactions, such as photoswitching. Here, we have rationally designed single-crystal core-shell-structured UCNPs which are capable of orthogonal UV and visible emissions in response to two distinct NIR excitations at 808 and 980 nm. The orthogonal excitation-emission properties of such UCNPs, as well as their ability to utilize low-power excitation, which attenuates any local heating from the lasers, endows the UCNPs with great potential for applications in materials and biological settings. As a proof of concept, the use of this UCNP for the efficient regulation of the two-way photoswitching of spiropyran by using dual wavelengths of NIR irradiation has been demonstrated.
机译:开发多色上转换纳米粒子(UCNPs)并具有响应外部刺激将其发射波长调节到可见光范围的能力,可以为高分辨率生物成像,多色条形码和驱动多个重要的光化学反应等应用提供更多动态平台。作为光开关。在这里,我们合理地设计了单晶核-壳结构的UCNP,它们能够响应808和980 nm处两个不同的近红外激发而产生正交的紫外线和可见光发射。此类UCNP的正交激发发射特性以及其利用低功率激发的能力,可减弱激光器的任何局部热量,使UCNP具有在材料和生物环境中应用的巨大潜力。作为概念的证明,已经证明了使用该UCNP通过使用NIR照射的双波长来有效调节螺吡喃的双向光开关。

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