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ZnO nanosheet arrays constructed on weaved titanium wire for CdS-sensitized solar cells

机译:编织钛丝上的ZnO纳米片阵列用于CdS敏化太阳能电池

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摘要

Ordered ZnO nanosheet arrays were grown on weaved titanium wires by a low-temperature hydrothermal method. CdS nanoparticles were deposited onto the ZnO nanosheet arrays using the successive ionic layer adsorption and reaction method to make a photoanode. Nanoparticle-sensitized solar cells were assembled using these CdS/ZnO nanostructured photoanodes, and their photovoltaic performance was studied systematically. The best light-to-electricity conversion efficiency was obtained to be 2.17% under 100 mW/cm2 illumination, and a remarkable short-circuit photocurrent density of approximately 20.1 mA/cm2 was recorded, which could attribute to the relatively direct pathways for transportation of electrons provided by ZnO nanosheet arrays as well as the direct contact between ZnO and weaved titanium wires. These results indicate that CdS/ZnO nanostructures on weaved titanium wires would open a novel possibility for applications of low-cost solar cells.
机译:通过低温水热法,在编织的钛丝上生长有序的ZnO纳米片阵列。使用连续的离子层吸附和反应方法将CdS纳米颗粒沉积到ZnO纳米片阵列上,以制成光阳极。使用这些CdS / ZnO纳米结构的光阳极组装了纳米粒子敏化的太阳能电池,并对其光伏性能进行了系统的研究。在100mW / cm 2 照度下,最佳的光电转换效率为2.17%,短路光电流密度约为20.1mA / cm 2 ,这可能归因于ZnO纳米片阵列提供的相对直接的电子传输路径,以及ZnO和编织的钛丝之间的直接接触。这些结果表明,在编织的钛丝上的CdS / ZnO纳米结构将为低成本太阳能电池的应用打开新的可能性。

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