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Near infrared emission properties of Er doped cubic sesquioxides in the second/third biological windows

机译:第二/第三生物窗口中掺Er的立方倍半氧化物的近红外发射特性

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摘要

In the recent years, there is an extensive effort concentrated towards the development of nanoparticles with near-infrared emission within the so called second or third biological windows induced by excitation outside 800–1000 nm range corresponding to the traditional Nd (800 nm) and Yb (980 nm) sensitizers. Here, we present a first report on the near-infrared (900–1700 nm) emission of significant member of cubic sesquioxides, Er-Lu2O3 nanoparticles, measured under both near-infrared up-conversion and low energy X-ray excitations. The nanoparticle compositions are optimized by varying Er concentration and Li addition. It is found that, under ca. 1500 nm up-conversion excitation, the emission is almost monochromatic (>93%) and centered at 980 nm while over 80% of the X-ray induced emission is concentrated around 1500 nm. The mechanisms responsible for the up-conversion emission of Er - Lu2O3 are identified by help of the up-conversion emission and excitation spectra as well as emission decays considering multiple excitation/emission transitions across visible to near-infrared ranges. Comparison between the emission properties of Er-Lu2O3 and Er-Y2O3 induced by optical and X-ray excitation is also presented. Our results suggest that the further optimized Er-doped cubic sesquioxides represent promising candidates for bioimaging and photovoltaic applications.
机译:近年来,人们进行了广泛的努力,致力于在所谓的第二或第三生物窗口内开发具有近红外发射的纳米粒子,所述第二或第三生物窗口是由与传统Nd(800 rangenm)和Yb对应的800-1000 nm范围外的激发所诱导的(980 nm)敏化剂。在这里,我们提出了第一份报告,说明了在近红外上转换和低能X射线激发下测量的立方倍半氧化物的重要成员Er-Lu2O3纳米粒子的近红外(900-1700 nm)发射。通过改变Er浓度和Li的添加来优化纳米颗粒的组成。发现,在约。在1500 nm上转换激发下,发射几乎是单色的(> 93%),并集中在980 nm处,而超过80%的X射线诱导发射集中在1500 nm附近。考虑到可见光到近红外范围内的多个激发/发射跃迁,借助上转换发射和激发光谱以及发射衰减来确定负责Er-Lu2O3上转换发射的机制。还对光学和X射线激发引起的Er-Lu2O3和Er-Y2O3的发射性质进行了比较。我们的结果表明,进一步优化的掺Er立方倍半氧化物代表了生物成像和光伏应用的有希望的候选者。

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