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Physical mechanism of delayed luminescence from human serum

机译:人血清延迟发光的物理机制

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The fluorescence spectra, delayed luminescence (DL) spectra and DL decay dynamics of human serum were studied by fluorescence and time resolved emission spectrum technology under different excitation conditions in this paper. The results we obtained are shown as follows: (1) the DL spectrum is similar to the time resolved fluorescence spectrum within 50ns after Ps laser pulse excitation. (2) The intensity and decay time of DL from the serum samples are dependent on excitation power and irradiation time. Under fixed excitation power, the longer irradiation time is, the higher the DL intensity; after the excitation energy reaches about 200mJ, the DL intensity is nearly unchanged. The change of DL decay time follows the similar regulation to that of DL intensity. (3) As the excitation energy increases, the spectral distribution of the relative intensities exhibits an observable change. The higher the excitation energy is, the stronger the relative intensity at short wavelength region. The results show that the delayed luminescence of human serum is mainly originated from its delayed fluorescence, phosphorescence, and induced bio-photon emission. These results may be also useful for the development of serum diagnosis technology.
机译:本文利用荧光和时间分辨发射光谱技术研究了不同激发条件下人血清的荧光光谱,延迟发光光谱和衰变动力学。我们获得的结果如下:(1)DL光谱类似于Ps激光脉冲激发后50ns内的时间分辨荧光光谱。 (2)血清样品中DL的强度和衰减时间取决于激发功率和照射时间。在固定激发功率下,照射时间越长,DL强度越高;激发能量达到约200mJ后,DL强度几乎不变。 DL衰减时间的变化遵循与DL强度相似的规律。 (3)随着激发能的增加,相对强度的光谱分布呈现出可观察到的变化。激发能越高,在短波长区域的相对强度越强。结果表明,人血清的延迟发光主要源于其延迟的荧光,磷光和诱导的生物光子发射。这些结果对于血清诊断技术的发展也可能是有用的。

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