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Surface plasmon enhanced Organic color image sensor with Ag nanoparticles coated with silicon oxynitride

机译:具有涂有氮氧化硅的Ag纳米粒子的表面等离子体增强有机彩色图像传感器

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As organic photodetectors with less than 1 μm pixel size are in demand, a new way of enhancing the sensitivity of the photodetectors is required to compensate for its degradation due to the reduction in pixel size. Here, we used Ag nanoparticles coated with SiO x N y as a light-absorbing layer to realize the scale-down of the pixel size without the loss of sensitivity. The surface plasmon resonance appeared at the interface between Ag nanoparticles and SiO x N y . The plasmon resonance endowed the organic photodetector with boosted photon absorption and external quantum efficiency. As the Ag nanoparticles with SiO x N y are easily deposited on ITO/SiO 2 , it can be adapted into various organic color image sensors. The plasmon-supported organic photodetector is a promising solution for realizing color image sensors with high resolution below 1 μm.
机译:由于具有小于1μm像素尺寸的有机光电探测器,需要一种增强光电探测器的灵敏度的新方法来补偿其由于像素尺寸的降低而降低其劣化。这里,我们使用涂有SiO X N Y作为光吸收层的Ag纳米颗粒,以实现像素尺寸的缩小而不会损失灵敏度。表面等离子体共振出现在Ag纳米颗粒和SiO X N Y之间的界面处。等离子体共振赋予有机光电探测器,具有升高的光子吸收和外部量子效率。当具有SiO X N Y的Ag纳米颗粒容易沉积在ITO / SiO 2上时,它可以适用于各种有机彩色图像传感器。等离子体支撑的有机光电探测器是实现高分辨率低于1μm的彩色图像传感器的有希望的解决方案。

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