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Constructing a Green Light Photodetector on Inorganic/Organic Semiconductor Homogeneous Hybrid Nanowire Arrays with Remarkably Enhanced Photoelectric Response

机译:在无机/有机半导体均匀混合纳米线阵列上构造绿色光光电探测器,具有显着增强的光电响应

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摘要

We demonstrate that a novel photodetector is constructed by CdS/poly(p-phenylene vinylene) (PPV) homogeneous hybrid nanowire arrays via a simple template-assisted electrochemical codeposition approach. Owing to the well-matched energy levels between CdS and PPV, the recombination of photogenerated electrons and holes in CdS/PPV hybrid nanowire arrays is greatly inhibited. It is found that the homogeneous hybrid nanowire arrays exhibit remarkably enhanced photoelectric response and the ON/OFF ratio by 17 times compared to the individual CdS component. More importantly, the CdS/PPV hybrid nanowire arrays are observed with significant spectral selectivity especially for green light under 545 nm. In addition, a straight linear relationship is obtained between the ON/OFF ratios and the illumination intensities, implying that the quantitative detection of illumination intensity can be achieved. The new as-prepared homogeneous hybrid organic/inorganic semiconductor nanowire arrays have a bright prospect for applications in high-sensitivity and high-speed green photodetectors.
机译:我们证明,通过简单的模板辅助电化学密码沉积方法,Cds / poly(对亚苯​​基乙烯乙烯)(PPV)均匀的混合纳米线阵列构成了一种新型光电探测器。由于CDS和PPV之间的良好的能量水平,大大抑制了光生电子和CDS / PPV杂交纳米线阵列中的光发生电子和孔的重组。发现均匀的混合纳米线阵列与各个CDS组分相比,均匀地表现出显着增强的光电响应和开/关比17次。更重要的是,观察CDS / PPV混合纳米线阵列,其具有显着的光谱选择性,特别是对于545nm下的绿色光。另外,在开/关比和照明强度之间获得直线关系,这意味着可以实现照明强度的定量检测。新的AS制备的均匀混合有机/无机半导体纳米线阵列具有高灵敏度和高速绿色光电探测器的应用的明亮前景。

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