Luminescence Intensity ELF Oscillations from a Polymer Membrane in the Aqueous Salt Solutions

Q3 Mathematics
N. Bunkin, S. V. Bashkin, P. N. Bolotskova, S. Gudkov, V. A. Kozlov
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引用次数: 0

Abstract

The paper studies luminescence from the Nafion polymer membrane surface at its swelling in the isotonic aqueous solutions and bi-distilled water using the experimental photo luminescent spectroscopy. Liquid samples were preliminarily treated with the electric pulses with duration of 1 µs and amplitude of 0.1 V using antenna in the form of a flat capacitor. Experiments in photo luminescent spectroscopy were carried out 20 min after the electric pulse treatment. Typical luminescence intensity dependence on the membrane swelling time could be represented as the exponentially decreasing function. Characteristic decay time of the corresponding functions and stationary level of the membrane luminescence intensity depend on the electrical pulses repetition rate. The obtained dependencies could well be reproduced. However, dependence of the luminescence intensity at certain pulse repetition rates appears to be a random function, and the reproducibility is missing. It could be assumed that these stochastic effects are associated with exposure to random external force of the electromagnetic nature acting on the polymer membrane during swelling. Low-frequency pulsations of neutron stars or white dwarfs are the source of this random force according to the authors of the work. This effect is associated with depolarization during the low-frequency electromagnetic field scattering caused by the neutron stars pulsation. Depolarization effect arises due to scattering on long-living anisotropic clusters of nano-bubbles, which, in turn, are becoming anisotropic in the external field of a flat capacitor. Depolarized scattered radiation causes stochastic oscillations of the polymer fibers unwound into the bulk liquid. In this case, luminescence should also acquire the stochastic character taking into account the effect of resonant luminescence energy transfer from a donor to the luminescence acceptor
盐水溶液中聚合物膜的发光强度ELF振荡
本文用实验光发光光谱法研究了Nafion聚合物膜在等渗水溶液和双蒸馏水中膨胀时的发光。采用扁平电容形式的天线,用持续时间为1µs、振幅为0.1 V的电脉冲对液体样品进行初步处理。电脉冲处理20 min后进行光致发光光谱实验。典型的发光强度与膜膨胀时间的关系可以表示为指数递减函数。相应函数的特征衰减时间和膜发光强度的平稳水平取决于电脉冲重复率。获得的依赖关系可以很好地再现。然而,在一定的脉冲重复率下,发光强度的依赖关系似乎是一个随机函数,并且缺乏再现性。可以假设这些随机效应与在膨胀过程中暴露于作用在聚合物膜上的随机电磁外力有关。根据该研究的作者,中子星或白矮星的低频脉动是这种随机力的来源。这种效应与中子星脉动引起的低频电磁场散射过程中的去极化有关。去极化效应是由于长寿命的各向异性纳米气泡团簇的散射而产生的,而这些纳米气泡团簇在平面电容器的外场中也变得各向异性。去极化散射辐射导致聚合物纤维在散体液体中随机振荡。在这种情况下,考虑到共振发光能量从供体转移到发光受体的影响,发光也应具有随机性
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来源期刊
CiteScore
1.10
自引率
0.00%
发文量
40
期刊介绍: The journal is aimed at publishing most significant results of fundamental and applied studies and developments performed at research and industrial institutions in the following trends (ASJC code): 2600 Mathematics 2200 Engineering 3100 Physics and Astronomy 1600 Chemistry 1700 Computer Science.
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