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Controllable Electrochemical Synthesis of Reduced Graphene Oxide Thin-Film Constructed as Efficient Photoanode in Dye-Sensitized Solar Cells

机译:在染料敏化太阳能电池中构建为高效光氧化物的还原石墨烯氧化膜的可控电化学合成

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摘要

A controllable electrochemical synthesis to convert reduced graphene oxide (rGO) from graphite flakes was introduced and investigated in detail. Electrochemical reduction was used to prepare rGO because of its cost effectiveness, environmental friendliness, and ability to produce rGO thin films in industrial scale. This study aimed to determine the optimum applied potential for the electrochemical reduction. An applied voltage of 15 V successfully formed a uniformly coated rGO thin film, which significantly promoted effective electron transfer within dye-sensitized solar cells (DSSCs). Thus, DSSC performance improved. However, rGO thin films formed in voltages below or exceeding 15 V resulted in poor DSSC performance. This behavior was due to poor electron transfer within the rGO thin films caused by poor uniformity. These results revealed that DSSC constructed using 15 V rGO thin film exhibited high efficiency (η = 1.5211%) attributed to its higher surface uniformity than other samples. The addition of natural lemon juice (pH ~ 2.3) to the electrolyte accelerated the deposition and strengthened the adhesion of rGO thin film onto fluorine-doped tin oxide (FTO) glasses.
机译:引入并详细研究了可控电化学合成以转化石墨薄片的还原的石墨烯氧化物(RGO)。由于其成本效益,环境友好性和生产RGO薄膜在工业规模中,电化学还原用于制备RGO。本研究旨在确定电化学减少的最佳应用潜力。施加的电压为15V成功形成均匀涂覆的RGO薄膜,该薄膜显着促进了染料敏化太阳能电池(DSSC)内的有效电子转移。因此,DSSC性能提高。然而,在低于或超过15V的电压中形成的RGO薄膜导致DSSC性能差。这种行为是由于均匀均匀性引起的RGO薄膜内的电子转移差。这些结果表明,使用15V RGO薄膜构建的DSSC表现出高效率(η= 1.5211%),其归因于其比其他样品更高的表面均匀性。将天然柠檬汁(pH〜2.3)加入电解质加速沉积并强化RGO薄膜的粘附到氟掺杂氧化锡(FTO)玻璃上。

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