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Far-field optical nanothermometry using individual sub-50 nm upconverting nanoparticles

机译:远场光学nanothermometry个人使用在这海里upconverting纳米颗粒

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We demonstrate far-field optical thermometry using individual NaYF4 nanoparticles doped with 2% Er3+ and 20% Yb3+. Isolated 20 x 20 x 40 nm(3) particles were identified using only far-field optical imaging, confirmed by subsequent scanning electron microscopy. The luminescence thermometry response for five such single particles was characterized for temperatures from 300 K to 400 K. A standard Arrhenius model widely used for larger particles can still be accurately applied to these sub-50 nm particles, with good particle-to-particle uniformity (response coefficients exhibited standard deviations below 5%). With its spatial resolution on the order of 50 nm when imaging a single particle, far below the diffraction limit, this technique has potential applications for both fundamental thermal measurements and nanoscale metrology in industrial applications.
机译:我们将演示远场光学温度测量使用个人NaYF4纳米颗粒掺杂Er3 + 2%和Yb3 + 20%。确定了粒子只使用远场光学成像,得到后续扫描确认电子显微镜。响应等五个单粒子特征温度从300 K到400年一个标准的阿伦尼乌斯模型广泛用于更大的粒子仍然可以准确应用这对这些纳米粒子,具有良好particle-to-particle一致性(响应系数标准差低于展出5%)。50纳米成像单粒子时,远低于衍射极限,这种技术基本的潜在应用热测量和纳米计量工业应用。

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