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首页> 外文期刊>Nanoscale Research Letters >Enhanced Electrochemical Catalytic Efficiencies of Electrochemically Deposited Platinum Nanocubes as a Counter Electrode for Dye-Sensitized Solar Cells
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Enhanced Electrochemical Catalytic Efficiencies of Electrochemically Deposited Platinum Nanocubes as a Counter Electrode for Dye-Sensitized Solar Cells

机译:电化学沉积铂纳米立方体作为染料敏化太阳能电池的对电极的增强的电化学催化效率

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Platinum nanocubes (PtNCs) were deposited onto a fluorine-doped tin oxide glass by electrochemical deposition (ECD) method and utilized as a counter electrode (CE) for dye-sensitized solar cells (DSSCs). In this study, we controlled the growth of the crystalline plane to synthesize the single-crystal PtNCs at room temperature. The morphologies and crystalline nanostructure of the ECD PtNCs were examined by field emission scanning electron microscopy and high-resolution transmission electron microscopy. The surface roughness of the ECD PtNCs was examined by atomic force microscopy. The electrochemical properties of the ECD PtNCs were analyzed by cyclic voltammetry, Tafel polarization, and electrochemical impedance spectra. The Pt loading was examined by inductively coupled plasma mass spectrometry. The DSSCs were assembled via an N719 dye-sensitized titanium dioxide working electrode, an iodine-based electrolyte, and a CE. The photoelectric conversion efficiency (PCE) of the DSSCs with the ECD PtNC CE was examined under the illumination of AM 1.5 (100?mWcm_(?2)). The PtNCs in this study presented a single-crystal nanostructure that can raise the electron mobility to let up the charge-transfer impedance and promote the charge-transfer rate. In this work, the electrocatalytic mass activity (MA) of the Pt film and PtNCs was 1.508 and 4.088?mAmg_(?1), respectively, and the MA of PtNCs was 2.71 times than that of the Pt film. The DSSCs with the pulse-ECD PtNC CE showed a PCE of 6.48?%, which is higher than the cell using the conventional Pt film CE (a PCE of 6.18?%). In contrast to the conventional Pt film CE which is fabricated by electron beam evaporation method, our pulse-ECD PtNCs maximized the Pt catalytic properties as a CE in DSSCs. The results demonstrated that the PtNCs played a good catalyst for iodide/triiodide redox couple reactions in the DSSCs and provided a potential strategy for electrochemical catalytic applications.
机译:通过电化学沉积(ECD)方法将铂纳米立方体(PtNC)沉积在掺氟的氧化锡玻璃上,并用作染料敏化太阳能电池(DSSC)的对电极(CE)。在这项研究中,我们控制晶体平面的生长以在室温下合成单晶PtNC。通过场发射扫描电子显微镜和高分辨率透射电子显微镜检查了ECD PtNCs的形貌和晶体纳米结构。通过原子力显微镜检查了ECD PtNC的表面粗糙度。通过循环伏安法,Tafel极化和电化学阻抗谱分析了ECD PtNC的电化学性质。通过电感耦合等离子体质谱法检查Pt负载。 DSSC通过N719染料敏化的二氧化钛工作电极,碘基电解质和CE组装而成。在AM 1.5(100?mWcm _(?2))的照明下,检查了带有ECD PtNC CE的DSSC的光电转换效率(PCE)。在这项研究中的PtNCs提出了一种单晶纳米结构,可以提高电子迁移率以降低电荷转移阻抗并提高电荷转移速率。在这项工作中,Pt膜和PtNC的电催化质量活性(MA)分别为1.508和4.088?mAmg _(?1),PtNC的MA是Pt膜的2.71倍。带有脉冲ECD PtNC CE的DSSC的PCE为6.48%,高于使用传统Pt膜CE的电池(PCE为6.18%)。与通过电子束蒸发方法制造的传统Pt膜CE相比,我们的脉冲ECD PtNC在DSSC中将CE作为CE发挥了最大的Pt催化性能。结果表明,PtNC对DSSC中的碘化物/三碘化物氧化还原偶联反应起着良好的催化作用,并为电化学催化应用提供了潜在的策略。

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