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首页> 外文期刊>RSC Advances >Remarkable enhancement of photovoltaic performance of ZnO/CdTe core-shell nanorod array solar cells through interface passivation with a TiO2 layer
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Remarkable enhancement of photovoltaic performance of ZnO/CdTe core-shell nanorod array solar cells through interface passivation with a TiO2 layer

机译:通过与TiO2层的界面钝化,ZnO / CdTe核壳纳米棒阵列太阳能电池的光伏性能显着提高

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摘要

All-inorganic solid-state ZnO/CdTe core-shell nanorod array solar cells (NRASCs) have been fabricated by a simple low-temperature and low-cost chemical solution method. A thin TiO2 layer with different thickness was introduced at the ZnO/CdTe interface using atomic layer deposition and its effect on the photovoltaic performance of the NRASCs was investigated. It is found that the overall power conversion efficiency of the ZnO/TiO2 (4 nm)/CdTe NRASC can reach up to 1.44% under AM 1.5G illumination (100 mW cm(-2)), which is about 6 times of the NRASC without TiO2 layer. By further systematic characterizations, we find that the thin TiO2 layer, serving as an efficient passivation and blocking layer at the interface of ZnO/CdTe nanorod, can remarkably suppress the charge recombination at the interface but negligibly affect the light absorption and the charge separation efficiency, thus leading to significant increases of the carrier lifetime and the open-circuit voltage of the NRASCs. This result expands the knowledge and opportunities for low-cost, high-performance NRASCs through simple interface engineering.
机译:通过简单的低温,低成本化学溶液法制备了全无机固态ZnO / CdTe核壳纳米棒阵列太阳能电池(NRASC)。利用原子层沉积法在ZnO / CdTe界面上引入了厚度不同的TiO2薄层,研究了其对NRASCs光伏性能的影响。发现在AM 1.5G照明(100 mW cm(-2))下,ZnO / TiO2(4 nm)/ CdTe NRASC的总功率转换效率可以达到1.44%,约为NRASC的6倍没有TiO2层。通过进一步的系统表征,我们发现作为ZnO / CdTe纳米棒界面上的有效钝化和阻挡层的TiO2薄层可以显着抑制界面处的电荷复合,但对光吸收和电荷分离效率的影响可忽略不计,从而导致载流子寿命和NRASC的开路电压大大增加。通过简单的接口工程,该结果扩展了低成本,高性能NRASC的知识和机会。

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