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Stimuli-Responsive Mechanoluminescence in Different Matrices

机译:不同基质中的刺激响应性机械发光

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Here, for the first time, we investigated the effects of matrixes with different nature on the stimuli-responsive mechanoluminescence (ML) of incorporated nanoparticles. It turned out that the contraction forces initiated by polymerization process can have compressive effects that differ by orders. This effect was achieved owing to the introduction of ML crystals in an alumina sol–gel system, which has large surface of coagulation contact. As one particle of boehmite results in a tension of 10–17–10–16 N per one particle of matrix, compared to 10–19 N of?PDMS matrix, the threshold of mechanoluminescence was reached at 0.04 Pa, whereas the most active materials to date did not exceed this value. Thus, this material can be a perspective for the production of impact detectors, photonic displays of the next generation, and other advanced devices.
机译:在这里,我们第一次研究了不同性质的基质对掺入纳米颗粒的刺激响应性机械发光(ML)的影响。事实证明,由聚合过程引发的收缩力可具有按顺序不同的压缩效果。由于在具有大的凝结接触表面的氧化铝溶胶-凝胶体系中引入了ML晶体,因此达到了这种效果。由于勃姆石的一个颗粒使每一个基质颗粒产生10–17–10–16 N的张力,而?PDMS基质的张力为10–19 N,则机械发光的阈值达到0.04 Pa,而活性最高的材料迄今为止未超过该值。因此,这种材料可以用于生产碰撞检测器,下一代光子显示器以及其他先进设备。

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