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Electrosprayed Molybdenum Trioxide Aqueous Solution and Its Application in Organic Photovoltaic Cells

机译:电喷雾三氧化钼水溶液及其在有机光伏电池中的应用

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摘要

A molybdenum trioxide thin film with smooth surface and uniform thickness was successfully achieved by an electrospray deposition method using an aqueous solution with a drastically low concentration of 0.05 wt%. Previous papers demonstrated that an additive solvent technique is useful for depositing the thin film by the electrospray deposition, and the high vapor pressure and a low surface tension of an additive solvent were found to be important factors. As a result, the smooth molybdenum trioxide thin film was obtained when the acetonitrile was used as the additive solvent. Furthermore, the vapor pressure of acetone is much higher than that of aqueous solution, and this indicates that the acetone is easily evaporated after spraying from the glass capillary. By optimizing a concentration of acetone in the molybdenum aqueous solution, a minimum root mean square roughness of the MoO3 thin film became 3.7 nm. In addition, an organic photovoltaic cell was also demonstrated using the molybdenum trioxide as a hole transport layer. Highest photoconversion efficiency was 1.72%, a value comparable to that using conventional thermal evaporation process even though the aqueous solution was used for the solution process. The photovonversion efficiency was not an optimized value, and the higher value can be achieved by optimizing the coating condition of the active layer.
机译:通过使用浓度极低的0.05重量%的水溶液的电喷雾沉积法,成功地获得了表面光滑且厚度均匀的三氧化钼薄膜。先前的论文证明了添加剂溶剂技术可用于通过电喷雾沉积来沉积薄膜,并且发现添加剂溶剂的高蒸气压和低表面张力是重要的因素。结果,当使用乙腈作为添加剂溶剂时,获得了光滑的三氧化钼薄膜。此外,丙酮的蒸气压比水溶液的蒸气压高得多,这表明从玻璃毛细管喷射后,丙酮容易蒸发。通过优化钼水溶液中丙酮的浓度,MoO3薄膜的最小均方根粗糙度变为3.7 nm。另外,还证明了使用三氧化钼作为空穴传输层的有机光伏电池。最高的光转换效率为1.72%,即使将水溶液用于固溶工艺,该值也可与使用常规热蒸发工艺的值相比。光电转换效率不是最佳值,并且可以通过优化活性层的涂覆条件来获得更高的值。

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