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High Energy Conversion Efficiency with 3-D Micro-Patterned Photoanode for Enhancement Diffusivity and Modification of Photon Distribution in Dye-Sensitized Solar Cells

机译:具有3D微图案化光电阳极的高能量转换效率可提高染料敏化太阳能电池的扩散率和光子分布的修正

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摘要

Dye sensitize solar cells (DSSCs) have been considered as the promising alternatives silicon based solar cell with their characteristics including high efficiency under weak illumination and insensitive power output to incident angle. Therefore, many researches have been studied to improve the energy conversion efficiency of DSSCs. However the efficiency of DSSCs are still trapped at the around 10%. In this study, micro-scale hexagonal shape patterned photoanode have proposed to modify light distribution of photon. In the patterned electrode, the appearance efficiency have been obtained from 7.1% to 7.8% considered active area and the efficiency of 12.7% have been obtained based on the photoanode area. Enhancing diffusion of electrons and modification of photon distribution utilizing the morphology of the electrode are major factors to improving the performance of patterned electrode. Also, finite element method analyses of photon distributions were conducted to estimate morphological effect that influence on the photon distribution and current density. From our proposed study, it is expecting that patterned electrode is one of the solution to overcome the stagnant efficiency and one of the optimized geometry of electrode to modify photon distribution. Process of inter-patterning in photoanode has been minimized.
机译:染料敏化太阳能电池(DSSC)被认为是基于硅的太阳能电池的有前途的替代品,其特性包括在弱光照下具有高效率以及对入射角不敏感的功率输出。因此,已经进行了许多研究来提高DSSC的能量转换效率。但是,DSSC的效率仍被困在10%左右。在这项研究中,微尺度六角形图案化的光阳极已经提出来改变光子的光分布。在图案化电极中,考虑到有效面积,已经获得了从7.1%到7.8%的外观效率,基于光阳极面积,已经获得了12.7%的效率。利用电极的形态来增强电子的扩散和改变光子分布是改善图案化电极的性能的主要因素。此外,进行了光子分布的有限元方法分析,以估计影响光子分布和电流密度的形态学效应。从我们提出的研究中,期望图案化电极是克服停滞效率的解决方案之一,并且是修饰光子分布的优化电极结构之一。光电阳极中的相互构图过程已最小化。

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