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Effect of the polymeric coating thickness on the photocurrent performance of titanium dioxide nanorod arrays-polyaniline composite-based UV photosensor

机译:聚合物涂层厚度对二氧化钛纳米棒 - 聚苯胺复合材料紫外线光电传感器的光电流性能的影响

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Titanium dioxide (TiO_2) nanorod arrays (TNAs) were synthesized and deposited on fluorine tin oxide (FTO)-coated glass substrate using a one-step immersion method in a glass container. The effect of the polymeric coating thickness of p-type polyaniline (PANI) on the n-type TNAs was investigated in the p-n heterojunction photodiode (PD) for the application of ultraviolet (UV) photosensor. The fabricated photosensor demonstrated an increased photocurrent under UV irradiation in correlation with the thickness layer of PANI. The measured UV response showed the highest photocurrent of 0.014 μA at 1.0 V of reverse bias with low dark current under the UV radiation (365 nm, 750 μW/cm~2). The thickness of the PANI film improved the photocurrent of the fabricated TNAs/PANI composite-based UV photosensor.
机译:使用玻璃容器中的一步浸法方法在氟锡氧化物(FTO)涂覆的玻璃基板上合成并沉积二氧化钛(TiO_2)纳米棒阵列(TNA)。 在P-N异质结光电二极管(PD)中研究了P型聚苯胺(PANI)对N型TNA的聚合物涂层厚度的影响,用于施加紫外(UV)光电传感器。 制造的光电传感器在与PANI的厚度层相关的相关性下,在UV照射下显示了增加的光电流。 测量的UV响应显示在UV辐射下的低暗电流的1.0V的逆偏压下为0.014μA的最高光电流(365nm,750μW/ cm〜2)。 PANI膜的厚度改善了基于TNA / PANI复合材料的UV光电传感器的光电流。

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