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Selenide effect for oxidation stability of the organic solvent-free copper sulfide Nano-particles and its organic photodiode application

机译:硒化物对无有机溶剂硫化铜纳米颗粒氧化稳定性的影响及其有机光电二极管的应用

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The development of copper chalcogenide nanomaterials has shown a potential for advanced energy application, because copper chalcogenide are p-type semiconductors with high hole concentration. In this study, copper sulfide (CuS) was synthesized and alloyed with Se via a water-based method without the use of organic solvent. We demonstrated that Se alloying to CuS nano-particles (NPs) could improve oxidation stability of dispersion in aqueous solution. Through this, the NPs were integrated with poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) into a simple mixing strategy, and used as a hole transporting materials with PEDOT:PSS for organic photodiodes (OPDs). OPD device with NPs showed suppressed dark current and remarkably enhanced detectivity in all wavelength regions due to formation of electron barrier compared to pristine PEDOT:PSS device. Moreover, when exposed to signal pulses, the photocurrent is improved, and the noise current is suppressed for the OPD with NPs. Therefore, incorporating stable copper chalcogenide NPs can improve performance, leading to cost-effective optoelectronic devices.
机译:硫属铜化物纳米材料的发展已显示出先进的能源应用潜力,因为硫属铜化物是具有高空穴浓度的p型半导体。在这项研究中,通过水基方法合成了硫化铜(CuS)并与硒合金化,而无需使用有机溶剂。我们证明了硒与CuS纳米颗粒(NPs)的合金化可以提高水溶液中分散体的氧化稳定性。通过这种方式,NPs与聚(3,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)集成为一种简单的混合策略,并与PEDOT:PSS一起用作有机光电二极管(OPD)的空穴传输材料。与原始的PEDOT:PSS器件相比,由于形成了电子势垒,带有NP的OPD器件在所有波长区域均表现出抑制的暗电流和显着增强的检测能力。而且,当暴露于信号脉冲时,光电流得到改善,并且对于具有NP的OPD,噪声电流得到抑制。因此,掺入稳定的硫属硫化物铜纳米颗粒可以改善性能,从而形成具有成本效益的光电器件。

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