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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Electrically enhancing and modulating the photoluminescence of upconversion nanoparticles using liquid crystals
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Electrically enhancing and modulating the photoluminescence of upconversion nanoparticles using liquid crystals

机译:使用液晶电增强和调节上转化纳米粒子的光致发光

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摘要

The use of an external electric field to enhance and modulate the photoluminescence (PL) of lanthanide-doped upconversion nanoparticles (UCNPs) is challenging. A liquid crystal (LC)-based approach is demonstrated in this study. By loading UCNPs in a polymer-stabilized, homogeneous LC matrix, the upconversion PL intensity can increase or decrease almost linearly upon increase or decrease, respectively, of the applied voltage, reaching an enhancement factor of about 6-8 at an electric field of 4.6 V m(-1) depending on the 980 nm excitation laser power and the applied a.c. field frequency. The origin of the electrical enhancement and modulation is the electric field induced LC texture (orientation state) transition that controls the light scattering of the LC/UCNP mixture. Increased scattering of the near infrared (NIR) excitation light before exciting the material increases its probability to be absorbed by the UCNPs and thus leads to enhanced PL emission. This LC scattering-based approach is facile, versatile and can readily be applied to UCNPs with no need for chemical composition or structural modifications that often require tedious synthesis.
机译:外部电场的使用以增强和调节光致发光(UCNP)的光致发光(PL)是具有挑战性的。本研究证明了基于液晶(LC)的方法。通过在聚合物稳定的均匀LC矩阵中加载UCNP,在施加的电压分别增加或减少时,上变化PL强度几乎可以在施加或减少时几乎线性地增加或减少,在4.6的电场上达到约6-8的增强因子V M(-1)取决于980nm励磁激光功率和应用的交流场频率。电力增强和调制的起源是控制LC / UCNP混合物的光散射的电场感应LC纹理(方向状态)转变。在激动促进材料之前,增加近红外(NIR)激发光的散射增加其概率被UCNP吸收,因此导致增强的PL发射。这种基于LC散射的方法是便于,通用的,并且可以容易地应用于UCNP,无需经常需要繁琐的合成的化学成分或结构修饰。

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