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Nano-grain SnO_2 electrodes for high conversion efficiency SnO_2DSSC

机译:纳米晶粒SnO_2电极可实现高转换效率SnO_2DS​​SC

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摘要

The nano-grain ZnO/SnO_2 composite electrode was prepared by adding 5 w% of the 200250 nm ZnO particles to the 5 nm SnO_2 colloid in the presence of hydroxypropylcellulose (M.W.=80,000). The nano-grain SnO _2 electrode was obtained by removing the ZnO particles from the composite electrode using acetic acid. The FE-SEM micrographs revealed that both electrodes consisted of interconnected nano-grains that were ca. 800 nm in size, and the large pores between the grains furnished the wide electrolyte diffusion channels within the electrodes. The photovoltaic properties of the nano-grain electrodes were investigated by measuring the IV behaviors, the IPCE spectra and the ac-impedance spectra. The nano-grain electrodes exhibited remarkably improved conversion efficiencies of 3.96% for the composite and 2.98% for the SnO_2 electrode compared to the value of 1.66% for the usual nano-particle SnO_2 electrode. The improvement conversion efficiencies were mainly attributed to the formation of nano-grains, which facilitated the electron diffusion within the grains. The improved electrolyte diffusion as well as the light-scattering effects enhanced the photovoltaic performance of the SnO_2 electrode.
机译:通过在羟丙基纤维素(M.W. = 80,000)存在下将5w%的200250nm ZnO颗粒添加到5nm的SnO_2胶体中来制备纳米颗粒的ZnO / SnO_2复合电极。通过使用乙酸从复合电极去除ZnO颗粒,获得了纳米晶粒的SnO _2电极。 FE-SEM显微照片显示,两个电极均由相互连接的纳米晶粒组成,纳米晶粒的尺寸约为。尺寸为800 nm,晶粒之间的大孔在电极内提供了较宽的电解质扩散通道。通过测量IV行为,IPCE光谱和交流阻抗谱研究了纳米颗粒电极的光电性能。与常规纳米颗粒SnO_2电极的1.66%相比,纳米颗粒电极的复合材料的转换效率显着提高,复合材料的转换效率为3.96%,SnO_2电极的转换效率为2.98%。转换效率的提高主要归因于纳米颗粒的形成,这促进了电子在晶粒内的扩散。改善的电解质扩散以及光散射效果增强了SnO_2电极的光伏性能。

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