二硫化钼颗粒对有机太阳能电池氧化锌电子传递层性能的影响

Q3 Engineering
A. Aimukhanov
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引用次数: 0

摘要

本文研究了二硫化钼对有机太阳能电池氧化锌电子传输层性能的影响。在异丙醇中对二硫化钼粉末进行激光烧蚀制备了二硫化钼颗粒。将纳米颗粒加入不同浓度的氧化锌溶胶-凝胶溶液中,形成复合膜。扫描电镜研究发现,随着膜中纳米颗粒浓度的增加,氧化锌表面二硫化钼层的厚度发生变化。薄膜结构中的二硫化钼颗粒逐渐填充氧化锌的体积和表面空隙。然而,当浓度超过1%时,薄膜中会形成孔洞和空洞。复合膜的吸收光谱表明,随着膜中纳米粒子浓度的增加,吸收强度随着膜总厚度的增加而增强。同时,氧化锌的光学带隙宽度没有变化,这意味着二硫化钼颗粒不影响氧化锌的电子结构。结果表明,复合薄膜电子传递层复合薄膜的伏安特性变化与二硫化钼粒子对有机太阳能电池电子传递的影响有关。阻抗谱研究发现,浓度低于临界值的二硫化钼提高了载流子的寿命,提高了复合膜中的扩散系数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
THE EFFECT OF MOLYBDENUM DISULFIDENANOPARTICLES ON THE PROPERTIES ZINC OXIDE ELECTRON TRANSPORT LAYER OF ORGANIC SOLAR CELLS
In this work, the effect of molybdenum disulfidenanoparticles on the properties zinc oxideelectron transport layer of organic solar cells is studied. molybdenum disulfidenanoparticles were obtained by laser ablation of MoS2 powder in isopropyl alcohol. To form composite films, nanoparticles were added to a sol–gel zinc oxidesolution with different concentrations.According to scanning electron microscope study, as the concentration of nanoparticles in the film increases, the thickness of the molybdenum disulfidelayer on the zinc oxide surface changes. molybdenum disulfidenanoparticles in the film structure gradually fill the bulk and surface voids inzinc oxide. However, when the concentration exceeds 1%, holes and voids are formed in the film. The absorption spectra of composite films showed that as the concentration of nanoparticles in the film increases, the absorption intensity enhances due to theincrease of the overall thickness. At the same time, zinc oxideoptical band gap width doesnot change, which means the molybdenum disulfidenanoparticles do not affect the electronic structure of zinc oxide. It was shown that the observed changes in the volt-ampere characteristicof organic solar cells with composite films electron transport layer composite films was associated with the influence of molybdenum disulfidenanoparticles on electron transport in organic solar cells.According to impedance spectroscopy study, it was found that molybdenum disulfidenanoparticles at concentration below critical value increases the lifetime of charge carriers and the diffusion coefficient in composite film.
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