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Broad band plasmonic nanomaterials for high performance solar cells

机译:用于高性能太阳能电池的宽带等离子体纳米材料

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摘要

A large enhancement in the performance of solar cells, arising from plasmonic nanomaterials with a broad band absorption spectrum, is proposed. Gold nanorod-in-shell (Au NR-in-shell) nanomaterials can absorb photons covering the UV-visible-NIR region in contrast to the two distinct narrow peaks for bare Au NRs. The broad localized surface plasmon resonance (LSPR) induced light absorption enhancement as well as series resistance, carrier lifetime and device mobility for devices containing Au NR-in-shells are superior than those for Au NR devices. To illustrate our working principle, we implemented Au NR-in-shells in polymer solar cells, which resulted in high efficiency. This led to the realization of polythieno[3,4-b]-thiophene/benzodithiophene:[6,6]-phenyl C-71 butyric acid methyl ester (PTB7:PC71BM) polymer solar cells (PSCs) with a power-conversion-efficiency (PCE) of 9.01%, which is more than twice the enhancement for that of Au NRs incorporated cells and sets the highest record reported to date for PTB7 based inverted devices adopting the plasmonic light trapping strategy. Our approach shown here is a key step for the further development of high performance optoelectronic devices.
机译:提出了由具有宽带吸收光谱的等离子体纳米材料引起的太阳能电池性能的大幅提高。壳金纳米棒(Au NR-in-shell)纳米材料可以吸收覆盖UV-visible-NIR区域的光子,这与裸金Au NRs的两个不同的窄峰相反。含有Au NR壳内器件的广泛的局部表面等离子体共振(LSPR)引起的光吸收增强以及串联电阻,载流子寿命和器件迁移率均优于Au NR器件。为了说明我们的工作原理,我们在聚合物太阳能电池中实施了金壳内金NR壳层,从而提高了效率。这导致实现了具有功率转换功能的聚噻吩并[3,4-b]噻吩/苯并二噻吩:[6,6]-苯基C-71丁酸甲酯(PTB7:PC71BM)聚合物太阳能电池(PSC)。效率(PCE)为9.01%,是掺入Au NRs电池的效率的两倍以上,并创下了迄今为止采用等离子光阱策略的基于PTB7的倒置设备的最高记录。此处显示的方法是进一步开发高性能光电器件的关键步骤。

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