Kim Jongwook, Michelin Sébastien, Hilbers Michiel, Martinelli Lucio, Chaudan Elodie, Amselem Gabriel, Fradet Etienne, Boilot Jean-Pierre, Brouwer Albert M, Baroud Charles N, Peretti Jacques, Gacoin Thierry
Laboratoire de Physique de la Matière Condensée, Ecole Polytechnique, CNRS, Université Paris-Saclay, 91128 Palaiseau, France.
Laboratoire d'Hydrodynamique (LadHyX), Ecole Polytechnique, CNRS, Université Paris-Saclay, 91128 Palaiseau, France.
Nat Nanotechnol. 2017 Sep;12(9):914-919. doi: 10.1038/nnano.2017.111. Epub 2017 Jun 19.
Rare-earth phosphors exhibit unique luminescence polarization features originating from the anisotropic symmetry of the emitter ion's chemical environment. However, to take advantage of this peculiar property, it is necessary to control and measure the ensemble orientation of the host particles with a high degree of precision. Here, we show a methodology to obtain the photoluminescence polarization of Eu-doped LaPO nanorods assembled in an electrically modulated liquid-crystalline phase. We measure Eu emission spectra for the three main optical configurations (σ, π and α, depending on the direction of observation and the polarization axes) and use them as a reference for the nanorod orientation analysis. Based on the fact that flowing nanorods tend to orient along the shear strain profile, we use this orientation analysis to measure the local shear rate in a flowing liquid. The potential of this approach is then demonstrated through tomographic imaging of the shear rate distribution in a microfluidic system.
稀土磷光体呈现出源自发射离子化学环境各向异性对称的独特发光偏振特性。然而,要利用这一特殊性质,有必要高精度地控制和测量主体颗粒的整体取向。在此,我们展示了一种获取组装在电调制液晶相中的Eu掺杂LaPO纳米棒光致发光偏振的方法。我们测量了三种主要光学配置(σ、π和α,取决于观察方向和偏振轴)下的Eu发射光谱,并将其用作纳米棒取向分析的参考。基于流动的纳米棒倾向于沿剪切应变分布取向这一事实,我们利用这种取向分析来测量流动液体中的局部剪切速率。然后通过对微流体系统中剪切速率分布的断层成像展示了该方法的潜力。