首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A dye-sensitized solar cell based on a boron-doped ZnO (BZO) film with double light-scattering-layers structured photoanode
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A dye-sensitized solar cell based on a boron-doped ZnO (BZO) film with double light-scattering-layers structured photoanode

机译:基于具有双光散射层结构的光阳极的掺硼ZnO(BZO)膜的染料敏化太阳能电池

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A double light-scattering-layer boron-doped ZnO (DL-BZO) film based dye-sensitized solar cell (DSSC) is fabricated with a high energy conversion efficiency of 7.2%. The over layer is made of well dispersed sub-micrometer-sized boron-doped ZnO (BZO) sphere arrays (SSA-BZO) to facilitate the fastest movement of electrons towards the electrodes and also function as light scattering centers. The under-layer, consisting of a nanoporous BZO nanoparticulate (NP-BZO) film, increases the dye adsorption and also reduces the injected electrons recombination. The DL-BZO film boosted the cell efficiencies because of its improved light-harvesting ability, larger surface area, photon-to-electron mechanism and doping of the ZnO films. The efficiency of 7.2% achieved for DL-BZO is much larger than the 4.1% obtained for double light-scattering-layers for undoped ZnO (DL-ZnO) films and is also higher than the 2.1% achieved for monolayer NP-BZO films. Addition of an SSA-BZO layer over the NP-BZO layer significantly improves the transport of electrons and their lifetime when compared to the NP-BZO film only. The DL-BZO film exhibit the slowest recombination rate of changes compared with the other films and is found to be a major factor for the improved cell efficiency. The cells exhibit high stability, in terms of cell performance, even after 35 days. The highest efficiency achieved in the present study is the highest ever reported for a double light-scattering-layer ZnO film-based DSSC.
机译:以7.2%的高能量转换效率制造了双光散射层掺杂硼的ZnO(DL-BZO)薄膜基染料敏化太阳能电池(DSSC)。上层由分散良好的亚微米尺寸的掺硼ZnO(BZO)球形阵列(SSA-BZO)制成,以促进电子向电极的最快移动,并且还充当光散射中心。由纳米多孔BZO纳米颗粒(NP-BZO)膜组成的底层增加了染料的吸附,还减少了注入的电子复合。 DL-BZO薄膜具有更高的集光能力,更大的表面积,光子至电子机制以及ZnO薄膜的掺杂,从而提高了电池效率。 DL-BZO的7.2%的效率远高于未掺杂ZnO(DL-ZnO)膜的双光散射层的4.1%的效率,也高于单层NP-BZO膜的2.1%的效率。与仅NP-BZO膜相比,在NP-BZO层上添加SSA-BZO层可显着改善电子的传输及其寿命。与其他薄膜相比,DL-BZO薄膜的复合变化速率最慢,并且是提高电池效率的主要因素。就细胞性能而言,即使在35天之后,细胞也表现出高稳定性。在本研究中获得的最高效率是有史以来报道的基于双光散射层ZnO薄膜的DSSC的最高效率。

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