首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Role of Oxygen Adsorption in Nanocrystalline ZnO Interfacial Layers for Polymer-Fullerene Bulk Heterojunction Solar Cells
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Role of Oxygen Adsorption in Nanocrystalline ZnO Interfacial Layers for Polymer-Fullerene Bulk Heterojunction Solar Cells

机译:氧在聚合物-富勒烯本体异质结太阳能电池的纳米ZnO界面层中的吸附作用。

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摘要

Colloidal zinc oxide (ZnO) nanoparticles are frequently used in the field of organic photovoltaics for the realization of solution-producible, electron-selective interfacial layers. Despite the widespread use, there is still lack of detailed investigations regarding the impact of structural properties of the ZnO particles, like the particle size and shape on the device performance. In the present work, ZnO nanoparticles with varying surface-area-to-volume ratio were synthesized and implemented into indium tin oxide free polymer-fullerene bulk heterojunction solar cells featuring a gas-permeable top electrode. By comparison of the electrical characteristics before and after encapsulation from the ambient atmosphere, it was found that the internal surface area of the ZnO layer plays a crucial role under conditions where oxygen can penetrate into the solar cells. The adsorption of oxygen species at the nanoparticle surface is believed to cause band bending and electron depletion next to the surface. Both effects result in the formation of a barrier for electron injection and extraction at the ZnO/bulk heterojunction interface and were more pronounced in the case of small ZnO nanocrystals with a high surface-area-to-volume ratio. Different transport-related phenomena in the presence of oxygen are discussed in detail, i.e., increasing ohmic losses, expressed in terms of series resistance, as well as the occurrence of space-charge-limited currents, related to the accumulation of charges in the polymer-fullerene blend. Since absorption of UV light can cause desorption of adsorbed oxygen species, the electrical properties depend also on the illumination conditions. With the help of systematic investigations of the current versus voltage characteristics of solar cells under different air exposure and illumination conditions as well as studies of the photoconductivity of pure ZnO nanoparticle layers, we gain detailed insight into the role of the ZnO nanoparticle surface for the functionality of the organic solar cells.
机译:胶体氧化锌(ZnO)纳米颗粒经常用于有机光伏领域,以实现溶液可生产的电子选择性界面层。尽管得到了广泛的应用,但仍缺乏有关ZnO颗粒的结构特性(如粒径和形状对器件性能的影响)的详细研究。在本工作中,合成了具有不同表面积与体积比的ZnO纳米颗粒,并将其应用于具有透气顶部电极的无铟锡氧化物的聚合物-富勒烯本体异质结太阳能电池。通过比较从周围大气封装前后的电特性,发现在氧气可以渗透到太阳能电池的条件下,ZnO层的内表面积起着至关重要的作用。认为氧物质在纳米颗粒表面上的吸附引起表面附近的带弯曲和电子耗竭。两种效应均导致在ZnO /本体异质结界面处形成电子注入和萃取的势垒,在具有高表面积体积比的ZnO纳米小晶体的情况下,这种影响更为明显。详细讨论了在氧气存在下与运输有关的各种现象,即,以串联电阻表示的欧姆损耗增加,以及与聚合物中电荷积累有关的空间电荷限制电流的出现-富勒烯混合物。由于吸收紫外线会导致吸附的氧种类解吸,因此电性能也取决于照明条件。通过对不同空气暴露和光照条件下太阳能电池电流与电压特性的系统研究,以及对纯ZnO纳米颗粒层的光电导性的研究,我们可以深入了解ZnO纳米颗粒表面对于功能的作用有机太阳能电池。

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