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Enhanced Photoanodic Output at an Organic p Bilayer in the Water Phase by Means of the Formation of Whiskered Phthalocyanine

机译:通过晶须酞菁的形成增强了水相中有机p / n双层的光阳极输出

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摘要

The photoelectrode characteristics of an organic p bilayer in the water phase were studied with respect to film; 3,4,9,10-perylenetetracarboxylic-bisbenzimida-zole (PTCBI, an n-type semiconductor) was used in combination with 29H,31H-phthalocyanine (H2Pc, a p-type semiconductor). When H2Pc was vapor-deposited on top of the PTCBI layer on a heated substrate (cf. degree of pressure, ca. 5.0 x 10~(-4) Pa; temperature at the substrate, 120°C), a transmission electron microscopic image showed an enhanced contact area of the p interface in comparison with that prepared at r.t, due to the formation of a whisker H2Pc. The PTCBI/H2Pc bilayer can work as a photoanode along with photophysical events in its interior. The rate-limiting charge transfer at the H2Pc/water interface was kinetically analyzed assuming the Langmuir adsorption equilibrium at that interface. Kinetic analysis demonstrated that the increased contact area can successfully lead to efficient photoinduced carrier generation; particularly, when a thick whisker of H2Pc was formed, the magnitude of the oxidation kinetics at the H2Pc/water interface was approximately 2.5 times higher than that without thermal treatment.
机译:针对薄膜研究了有机p / n双层在水相中的光电极特性; 3,4,9,10-per四甲酸-双苯并咪唑(PTCBI,n型半导体)与29H,31H-酞菁(H2Pc,p型半导体)结合使用。当H2Pc气相沉积在加热的基板上的PTCBI层顶部时(参见压力度,约5.0 x 10〜(-4)Pa;基板温度,120°C),透射电子显微图像由于形成了晶须H2Pc,与在rt制备的相比,p / n界面的接触面积增加了。 PTCBI / H2Pc双层可以充当光电阳极,并在其内部发生光物理事件。假设该界面处的朗缪尔吸附平衡,对H2Pc /水界面上的限速电荷转移进行了动力学分析。动力学分析表明,增加的接触面积可以成功地导致有效的光诱导载流子产生。特别是,当形成厚厚的H2Pc晶须时,H2Pc /水界面的氧化动力学幅度比未经热处理的高约2.5倍。

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