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首页> 外文期刊>Solar Energy >Micro-wheels composed of self-assembled tungsten oxide nanorods supported platinum counter electrode for highly efficient liquid-junction photovoltaic devices
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Micro-wheels composed of self-assembled tungsten oxide nanorods supported platinum counter electrode for highly efficient liquid-junction photovoltaic devices

机译:由自组装钨纳米棒组成的微轮,支撑铂对电极用于高效液态接线光伏器件

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摘要

In this study, the synthesis of micro-wheels composed of self-assembled tungsten oxide nanorods supported platinum (WO3/Pt) by atmospheric plasma reduction and its application in a counter electrode (CE) for highly efficient dye-sensitized solar cells were discussed. To characterize the developed materials, we conducted SEM, TEM, EDS-TEM, XRD. Due to a large surface-active area of developed material and its support for Pt nanoparticles in diameters of 2-3 nm, the WO3/Pt electrode indicated as a greater electrochemical catalyst for the redox reaction than Pt and WO3 CEs. Thus, the power conversion efficiency for a device with WO3/Pt electrode is improved to 8.10%, compared to 4.36% for a device with WO3 electrode and 7.61% for a cell with a Pt electrode. This study also supplies a procedure for fabricating highly catalytic and low-price catalyst materials for CEs, which has a tremendous meaning for various applications of micro-wheels consisted of self-assembled WO3 nanorods integrated with platinum.
机译:在该研究中,讨论了通过大气压等离子体还原由大气压等离子体还原的自组装钨氧化物纳米棒组成的微轮的合成及其在用于高效染料敏化太阳能电池的对电极(CE)中的应用。为了表征开发的材料,我们进行了SEM,TEM,EDS-TEM,XRD。由于发育材料的大表面活性区域及其对直径为2-3nm的Pt纳米颗粒的载体,因此WO3 / Pt电极表示为氧化还原反应的更大电化学催化剂,而不是Pt和WO3 CES。因此,具有WO3 / Pt电极的装置的功率转换效率得到改善为8.10%,而具有WO3电极的装置的4.36%,具有PT电极的电池的7.61%。本研究还提供了一种用于制造CES的高催化和低价催化剂材料的方法,这对于微型轮子的各种应用具有巨大的意义,包括与铂相结合的自组装WO3纳米棒。

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