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用于柔性染料敏化太阳能电池的具有分级纳米森林TiO结构和银等离子体纳米颗粒的光阳极。

A photoanode with hierarchical nanoforest TiO structure and silver plasmonic nanoparticles for flexible dye sensitized solar cell.

作者信息

Choudhury Brishty Deb, Lin Chen, Shawon Sk Md Ali Zaker, Soliz-Martinez Javier, Huq Hasina, Uddin Mohammed Jasim

机构信息

Department of Chemistry, PERL-Photonic and Energy Research Laboratory, The University of Texas Rio Grande Valley, 1201 West University Dr, Edinburg, TX, 78539, USA.

Department of Electrical and Computer Engineering, The University of Texas Rio Grande Valley, 1201 West University Dr, Edinburg, TX, 78539, USA.

出版信息

Sci Rep. 2021 Apr 6;11(1):7552. doi: 10.1038/s41598-021-87123-z.

Abstract

Due to unique photovoltaic properties, the nanostructured morphologies of TiO on flexible substrate have been studied extensively in the recent years for applications in dye sensitized solar cells (DSSCs). Microstructured electrode materials with high surface area can facilitate rapid charge transport and thus improve the light-to-current conversion efficiency. Herein we present an improved photoanode with forest like photoactive TiO hierarchical microstructure using a simple and facile hydrothermal route. To utilize the surface plasmon resonance (SPR) and hence increase the photon conversion efficiency, a plasmonic nanoparticle Ag has also been deposited using a very feasible photoreduction method. The branched structure of the photoanode increases the dye loading by filling the space between the nanowires, whereas Ag nanoparticles play the multiple roles of dye absorption and light scattering to increase the light-to-current conversion efficiency of the device. The branched structure provides a suitable matrix for the subsequent Ag deposition. They improve the charge collection efficiency by providing the preferential electron pathways. The high-density Ag nanoparticles deposited on the forest like structure also decrease the charge recombination and therefore improve the photovoltaic efficiency of the cells. As a result, the DSSC based on this novel photoanode shows remarkably higher photon conversion efficiency (η = 4.0% and η = 3.15%) compared to the device based on pristine nanowire or forest-like TiO structure. The flexibility of the device showed sustainable and efficient performance of the microcells.

摘要

由于具有独特的光电特性,近年来人们对柔性衬底上TiO的纳米结构形态进行了广泛研究,以应用于染料敏化太阳能电池(DSSC)。具有高表面积的微结构电极材料可以促进快速电荷传输,从而提高光电流转换效率。在此,我们采用简单便捷的水热法制备了一种具有森林状光活性TiO分级微结构的改进型光阳极。为了利用表面等离子体共振(SPR)并提高光子转换效率,还采用非常可行的光还原法沉积了等离子体纳米颗粒Ag。光阳极的分支结构通过填充纳米线之间的空间增加了染料负载量,而Ag纳米颗粒则起到染料吸收和光散射的多重作用,以提高器件的光电流转换效率。分支结构为后续Ag沉积提供了合适的基质。它们通过提供优先电子路径提高了电荷收集效率。沉积在森林状结构上的高密度Ag纳米颗粒也减少了电荷复合,从而提高了电池的光伏效率。结果,与基于原始纳米线或森林状TiO结构的器件相比,基于这种新型光阳极的DSSC显示出显著更高的光子转换效率(η = 4.0%和η = 3.15%)。该器件的柔韧性显示出微电池可持续且高效的性能。

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