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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Three-dimensional hyperbranched TiO2/ZnO heterostructured arrays for efficient quantum dot-sensitized solar cells
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Three-dimensional hyperbranched TiO2/ZnO heterostructured arrays for efficient quantum dot-sensitized solar cells

机译:高效量子点敏化太阳能电池的三维超支化TiO2 / ZnO异质结构阵列

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摘要

The ingenious design of nanostructures and smart integration of specific semiconducting metal oxide materials are closely related to the photovoltaic performance of solar cells. Herein, we successfully fabricate vertically aligned TiO2 nanowire-TiO2 nanosheet-ZnO nanorod (TNW-TNS-ZNR) hyperbranched heterostructured arrays on TCO substrates as excellent anode material electrodes for efficient solar-to-electricity conversion. As a result, the TNW-TNS-ZNR heterostructured array based quantum dot-sensitized solar cells (QDSSCs) have exhibited an improved power conversion efficiency (PCE) under AM 1.5G one sun illumination, along with considerable improvement of short-circuit current density (J(sc)), open voltage (V-oc) and fill factor (FF) due to their superior light harvesting and excellent charge collection capability. Combined with the chemical bath deposited Cu2S counter electrode, the eventual PCE of CdS/CdSe co-sensitized solar cells can be further boosted to as high as 5.38%.
机译:纳米结构的巧妙设计和特定半导体金属氧化物材料的智能集成与太阳能电池的光伏性能密切相关。在这里,我们成功地在TCO基板上成功制作了垂直排列的TiO2纳米线-TiO2纳米片-ZnO纳米棒(TNW-TNS-ZNR)超支化异质结构阵列,作为用于高效太阳能转换的出色阳极材料电极。结果,基于TNW-TNS-ZNR异质结构阵列的量子点敏化太阳能电池(QDSSC)在AM 1.5G一次阳光照射下表现出更高的功率转换效率(PCE),同时短路电流密度也得到了显着改善(J(sc)),开路电压(V-oc)和填充因子(FF),因为它们具有出色的光收集能力和出色的电荷收集能力。结合化学浴沉积的Cu2S对电极,CdS / CdSe共敏太阳能电池的最终PCE可以进一步提高到5.38%。

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