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Optimal Series-parallel Connection Method Of Dye-sensitized Solar Cell For Pt Thin Film Deposition Using A Radio Frequency Sputter System

机译:射频溅射系统的染料敏化太阳能电池Pt薄膜沉积的最佳串联-并联连接方法

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The counter electrode widely used in DSC (Dye-sensitized solar cells) is constructed of a conducting glass substrate coated with a Pt film, in which the platinum acts as a catalyst. The characteristics of the platinum electrode depend strongly on the fabrication process and the electrode's surface condition. In this study, Pt counter electrodes were deposited by radio frequency (RF) sputtering with 6.7 × 10~(-1) Pa Ar, RF power of 120 W and substrate temperature of 100 ℃. The surface morphology of Pt electrodes was investigated using field emission scanning electron microscopy and atomic force microscopy. Comparison of samples prepared by RF sputtering and RF magnetron sputtering showed that the surface of the RF sputter deposited electrode had a larger surface area resulting in more effective catalytic characteristics. Finally, an open voltage of 4.8 V, a short circuit current of 569 mA and a photoelectric conversion efficiency of approximately 3.6% were achieved for cells composed of 30 DSC units of 6 cm × 4 cm DSC units with 6 cells in series and 5 cells in parallel.
机译:在DSC(染料敏化太阳能电池)中广泛使用的对电极是由涂有Pt膜的导电玻璃基板构成的,其中铂用作催化剂。铂电极的特性在很大程度上取决于制造工艺和电极的表面状况。本研究采用6.7×10〜(-1)Pa Ar的射频(RF)溅射,120 W的RF功率和100℃的衬底温度沉积Pt对电极。使用场发射扫描电子显微镜和原子力显微镜研究了Pt电极的表面形态。通过RF溅射和RF磁控溅射制备的样品的比较表明,RF溅射沉积电极的表面具有较大的表面积,从而导致更有效的催化特性。最后,对于由30个6 cm×4 cm DSC单元,6个串联电池和5个DSC单元组成的电池,实现了4.8 V的开路电压,569 mA的短路电流和大约3.6%的光电转换效率。在平行下。

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