首页> 外文期刊>International Journal of Nanotechnology >Effect of seed particle size and ammonia concentration on the growth of ZnO nanowire arrays and their photoconversion efficiency
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Effect of seed particle size and ammonia concentration on the growth of ZnO nanowire arrays and their photoconversion efficiency

机译:种子粒径和氨浓度对ZnO纳米线阵列生长及其光转换效率的影响

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摘要

ZnO nanowire arrays were synthesised for dye-sensitised solar cell applications using the chemical bath deposition technique. To study the effect of the particle size in the seed layer on the growth and resultant photoconversion efficiency, we prepared various seeded FTO substrates by repeating the seed layer sol-gel coating process. It was found that changing the number of coating process merely increases the particle size of the ZnO seeds, and the increase in the seed particle size induces low growth rates. In addition, to enhance the nanowire growth rates, ammonia was added with polyethylenimine. Based on various characterisations such as XRD, SEM, and J-V curves, we discuss the effect of ammonia on the growth rates of ZnO nanowire, and suggest the optimum ammonia concentration for solar cell applications.
机译:使用化学浴沉积技术合成了用于染料敏化太阳能电池的ZnO纳米线阵列。为了研究种子层中粒径对生长和最终光转换效率的影响,我们通过重复种子层溶胶-凝胶涂覆工艺来制备各种种子FTO基材。已经发现改变涂覆过程的数目仅增加了ZnO种子的粒径,并且种子粒径的增加引起低的生长速率。另外,为了提高纳米线的生长速率,将氨与聚乙烯亚胺一起添加。基于各种特征,如XRD,SEM和J-V曲线,我们讨论了氨对ZnO纳米线生长速率的影响,并提出了用于太阳能电池应用的最佳氨浓度。

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