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Tunable Narrow Band Emissions from Dye-Sensitized Core/Shell/Shell Nanocrystals in the Second Near-Infrared Biological Window

机译:染料敏化的核/壳/壳纳米晶体在第二个近红外生物窗口中的可调窄带发射。

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摘要

We introduce a hybrid organic–inorganic system consisting of epitaxial NaYF4:Yb3+/X3+@NaYbF4@NaYF4:Nd3+ (X = null, Er, Ho, Tm, or Pr) core/shell/shell (CSS) nanocrystal with organic dye, indocyanine green (ICG) on the nanocrystal surface. This system is able to produce a set of narrow band emissions with a large Stokes-shift (>200 nm) in the second biological window of optical transparency (NIR-II, 1000–1700 nm), by directional energy transfer from light-harvesting surface ICG, via lanthanide ions in the shells, to the emitter X3+ in the core. Surface ICG not only increases the NIR-II emission intensity of inorganic CSS nanocrystals by ~4-fold but also provides a broadly excitable spectral range (700–860 nm) that facilitates their use in bioapplications. We show that the NIR-II emission from ICG-sensitized Er3+-doped CSS nanocrystals allows clear observation of a sharp image through 9 mm thick chicken breast tissue, and emission signal detection through 22 mm thick tissue yielding a better imaging profile than from typically used Yb/Tm-codoped upconverting nanocrystals imaged in the NIR-I region (700–950 nm). Our result on in vivo imaging suggests that these ICG-sensitized CSS nanocrystals are suitable for deep optical imaging in the NIR-II region.
机译:我们介绍了一种由外延NaYF4:Yb 3 + / X 3 + @ NaYbF4 @ NaYF4:Nd 3 + ( X =空,Er,Ho,Tm或Pr)核/壳/壳(CSS)纳米晶体,有机染料,在纳米晶体表面上的吲哚菁绿(ICG)。该系统能够通过光收集中的定向能量转移,在光学透明度的第二个生物窗口(NIR-II,1000-1700 nm)中产生一组具有大斯托克斯位移(> 200 nm)的窄带发射。表面ICG通过壳中的镧系元素离子到达核中的发射极X 3 + 。表面ICG不仅将无机CSS纳米晶体的NIR-II发射强度提高了约4倍,而且还提供了广泛的可激发光谱范围(700-860 nm),从而促进了它们在生物应用中的使用。我们表明,ICG敏化的Er 3 + 掺杂CSS纳米晶体的NIR-II发射可通过9毫米厚的鸡胸组织清晰观察到清晰的图像,并通过22毫米厚的组织进行发射信号检测与在NIR-1区域(700-950 nm)成像的通常使用的Yb / Tm掺杂的上转换纳米晶体相比,其成像效果更好。我们在体内成像的结果表明,这些ICG敏化的CSS纳米晶体适用于NIR-II区的深光学成像。

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