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Broadband and omnidirectional light harvesting enhancement in photovoltaic devices with aperiodic TiO2 nanotube photonic crystal

机译:非周期性TiO2纳米管光子晶体在光伏器件中的宽带和全向光收集增强

摘要

Design of more effective broadband light-trapping elements to improve the light harvesting efficiency under both normal and tilted light for solar cells and other photonic devices is highly desirable. Herein we present a theoretical analysis on the optical properties of a novel TiO2 nanotube aperiodic photonic crystal (NT APC) following an aperiodic sequences and its photocurrent enhancement effect for dye-sensitized solar cells (DSSCs) under various incidence angles. It is found that, compared to regular PC, the designed TiO2 NT APC owns broader reflection region and a desired omnidirectional reflection (ODR) bandgaps, leading to considerable and stable photocurrent enhancement under both normal and oblique light. The effects of the structural parameters of the TiO2 NT APC, including the average lattice constant and the common sequence difference, on the optical properties, ODR bandgaps and absorption magnification of the integrated DSSCs are investigated in detail. Moreover, the angular dependence of photocurrent enhancement and angular compensation effect of such TiO2 NT APCs are also provided to offer a guidance on the optimum structural parameters design under different engineering application conditions.
机译:迫切需要设计出更有效的宽带光捕获元件,以提高太阳能电池和其他光子设备在正常和倾斜光下的光收集效率。在本文中,我们提出了一种新型的TiO2纳米管非周期性光子晶体(NT APC)遵循非周期性序列的光学特性及其在染料在不同入射角下对染料敏化太阳能电池(DSSCs)的光电流增强效应的理论分析。发现,与常规PC相比,设计的TiO2 NT APC具有更宽的反射区域和所需的全向反射(ODR)带隙,从而在正常和倾斜光下均具有相当大且稳定的光电流增强。详细研究了TiO2 NT APC的结构参数,包括平均晶格常数和共同的序列差异,对集成DSSC的光学性能,ODR带隙和吸收倍率的影响。此外,还提供了这种TiO2 NT APC的光电流增强的角度依赖性和角度补偿效果,以为不同工程应用条件下的最佳结构参数设计提供指导。

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