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Photoluminescence, photochromism, and reversible luminescence modulation behavior of Sm-doped Na0.5Bi2.5Nb2O9 ferroelectrics

机译:SM掺杂Na0.5bi2.5nb2o9铁电气的光致发光,光学变色和可逆发光调制行为

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摘要

Sm-modified Na0.5Bi2.5Nb2O9 ceramics can simultaneously exhibit both visible light-driven photochromism and photoluminescence. Upon visible light irradiation, these materials change their color from green to dark gray, while exhibiting a strong red emission at 603 nm due to the (4)G(5/2) -> H-6(7/2) transition, whose emission intensity strongly depends on the irradiation wavelength, intensity, and time, and significantly decreases with increasing irradiation time and intensity. By alternating visible light or sunlight (lambda > 400 nm) irradiation and thermal stimulus, both luminescence and absorption intensity can be reversibly switched without any significant degradation between the two colored and bleached states, with excellent reproducibility. On the basis of the trapped charge carrier and exponential relaxation decay models, we herein provide a detailed understanding of the photochromism and luminescence modulation mechanisms. (C) 2016 Elsevier Ltd. All rights reserved.
机译:SM-改性的Na0.5bi2.5nb2O9陶瓷可以同时表现出可见光的光学变色和光致发光。 在可见光照射时,这些材料将它们的颜色从绿色变为深灰色,同时由于(4)G(5/2) - > H-6(7/2)转变,其 发射强度强烈取决于照射波长,强度和时间,随着照射时间和强度的增加而显着降低。 通过交替的可见光或阳光(Lambda> 400nm)照射和热刺激,可以在两个着色和漂白状态之间无任何显着降解的发光和吸收强度,没有任何显着降解,具有出色的再现性。 在捕获的电荷载体和指数松弛衰减模型的基础上,我们在本文中提供了对光学变频和发光调制机制的详细了解。 (c)2016 Elsevier Ltd.保留所有权利。

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