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首页> 外文期刊>Synthetic Metals >Electrochemical studies on photoactive semiconductor Organic/Inorganic hybrid interface consisting of a poly tris[4-(2-Thienyl)phenyl] amine and CdS nanoparticles
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Electrochemical studies on photoactive semiconductor Organic/Inorganic hybrid interface consisting of a poly tris[4-(2-Thienyl)phenyl] amine and CdS nanoparticles

机译:聚三[4-(2-噻吩基)苯基]胺与CdS纳米粒子组成的光敏半导体有机/无机杂化界面的电化学研究

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An organic/inorganic interface (OII) assembly was created with poly(tris(4-(2-Thienyl)phenyl)amine) (PUPA) and amorphous CdS nanoparticles by an occlusion-electrodeposition (OE) method. The C-3-symmetric monomer, tris(4-(2-Thienyl)phenyl)amine (TFPA), was chosen with the assumption that it would form a branched polymeric network suitable for efficient nanoparticle occlusion The assembly was subjected to photoelectrochemical investigation in aqueous electrolytes containing either acetate, nitrate or phosphate counter-anions. The measured photoactivities of the Oil suggest that a p-n junction was formed, in part, because of the narrow band bap of CdS. Results also suggest that a hybrid sub-band formed at the interface as the result of alignment of the energy bands of PTTPA and CdS. Furthermore, 02 played an important role in charge separation and transfer processes. We explain the photoactivity of the OIL assembly with reference to measured properties including electron affinity, work function and hole/electron barrier heights. The aqueous nano-system was moderately stable, as indicated by the reproducibility of its photoactivity. Thus, OE was an effective method for creating this photoactive OII assembly. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过闭塞电沉积(OE)方法,使用聚(三(4-(2-噻吩基)苯基)胺)(PUPA)和无定形CdS纳米粒子创建了有机/无机界面(OII)组件。选择C-3对称单体三(4-(2-噻吩基)苯基)胺(TFPA),其前提是它会形成适用于有效纳米颗粒吸附的支链聚合物网络。含有乙酸根,硝酸根或磷酸根抗衡离子的水性电解质。测得的该油的光活性表明,由于CdS的窄带能隙,形成了p-n结。结果还表明,由于PTTPA和CdS的能带对齐,在界面处形成了一个混合子带。此外,O 2在电荷分离和转移过程中起着重要作用。我们参照测量的特性(包括电子亲和力,功函数和空穴/电子势垒高度)来解释OIL组件的光活性。如其光活性的可再现性所示,水性纳米系统是中等稳定的。因此,OE是创建这种光敏性OII组件的有效方法。 (C)2016 Elsevier B.V.保留所有权利。

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