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Organic fluorophores doped nanoparticles for thin film sensors

机译:用于薄膜传感器的有机荧光团掺杂纳米粒子

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An organic polymeric fluorophore, s-triazine (ST) bridged p-phenylenevinylene (PPV), was explored for a thin film sensor. The ST-PPV showed fluorescence intensity in response to the polarity of organic molecules. The fluorophore was doped in transparent polymeric binder to prepare a thin film sensor. Fluorescence intensity of the thin film sensor was dramatically changed by the polarity change of the organic vapor. Addition of titanium dioxide nanoparticles into the polymer thin film sensor enhanced dramatically the fluorescence intensity. The nanoparticle doped fluorescent thin film sensor showed large change in intensity upon exposed to different organic molecules.
机译:探讨了有机聚合物荧光团,S-三嗪(ST)桥接对苯基乙烯基(PPV),用于薄膜传感器。 ST-PPV响应于有机分子的极性而显示荧光强度。荧光团掺杂在透明的聚合物粘合剂中以制备薄膜传感器。通过有机蒸汽的极性变化显着改变薄膜传感器的荧光强度。将二氧化钛纳米颗粒加入聚合物薄膜传感器中,显着提高了荧光强度。纳米颗粒掺杂的荧光薄膜传感器在暴露于不同的有机分子时显示出大的强度变化。

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