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首页> 外文期刊>ACS applied materials & interfaces >Fabrication and Characterization of a Capacitive Photodetector Comprising a ZnS/Cu Particle/Poly(vinyl butyral) Composite
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Fabrication and Characterization of a Capacitive Photodetector Comprising a ZnS/Cu Particle/Poly(vinyl butyral) Composite

机译:包含ZnS / Cu颗粒/聚(乙烯基丁醛)复合材料的电容式光电探测器的制造和表征

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Most photodetectors developed to date essentially measure photocurrents induced by the generation and separation of electron hole pairs in semiconductors during irradiation. Although the above light detection method is well established, highly sensitive, and applicable to a broad range of semiconductor materials, it requires the presence of a stable and direct contact between the semiconductor and the electrode for accurate photocurrent measurements. In turn, this prerequisite necessitates the use of various costly processes for device fabrication (e.g., photolithography and vacuum deposition of semiconductors/metals) and complicates the development of flexible devices. Herein, inspired by the fact that the dielectric properties of certain materials can be changed by light irradiation, we dispersed ZnS/Cu semiconducting particles in poly(vinyl butyral) to prepare a free-standing composite film and formed two layers of Ag nanowire electrodes on both sides of the cured composite to fabricate a photodetector of a completely new type. The developed device exhibited a capacitance very sensitive to irradiation with light of a specific wavelength and additionally featured the advantages of simple structure/operation mechanism, mechanical flexibility, and transparency, not showing any signs of performance deterioration even after severe damage.
机译:大多数光电探测器迄今为止,基本上测量了在照射期间半导体中的电子空穴对的产生和分离所引起的光电流。尽管上述光检测方法是很好的建立,高度敏感的,并且适用于广泛的半导体材料,但它需要在半导体和电极之间存在稳定和直接接触,以精确光电流测量。反过来,该先决条件需要使用各种昂贵的装置制造方法(例如,光刻和半导体/金属的真空沉积),并使柔性器件的发展复杂化。这里的灵感灵感,即可以通过光照射改变某些材料的电介质性质,我们在聚(乙烯基丁醛)中分散ZnS / Cu半导体颗粒以制备独立式复合膜并形成两层Ag纳米线电极固化复合材料的两侧用于制造完全新型的光电探测器。开发的装置表现出非常敏感的电容与特定波长的光线,并且另外具有结构/操作机构,机械柔韧性和透明度,即使在严重损伤后也没有显示出任何性能劣化的迹象。

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