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Preparation of Fuorine-doped Tin Oxide (FTO) Template for Coated Platinum (Pt) Layer Counter Electrode by Electrochemical Method for Dye-sensitized Solar Cell Application

机译:用电化学方法制备掺杂铂(Pt)层对电极的掺杂铂(Pt)层对电极的制备染料敏化太阳能电池应用

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In this work, we focus on increasing surface area of Pt layer used as a counter electrode in dye-sensitized solar cells (DSSC). The increasing surface area of Pt layer was prepared by coating Pt layer on FTO template. The FTO template was fabricated by dipping FTO glass in hydrochloric (HCl) acid with concentration of 0.016, 0.324 and 1.62 M and immersion time of 5, 15, 30, 45 and 60 s, respectively. The Pt layer counter electrode was coated on FTO template by electrochemical technique with Pt(NH_3)_4Cl_2 powder dissolved in HCl solution. The coating current was fixed at 25 mA and deposition times were varied from 10, 30 to 60 min. The sheet resistance, surface roughness and structural property of FTO substrate were examined by Van der pauw technique, atomic force microscopy (AFM) and X-ray diffraction, respectively. The AFM image shows that surface roughness of FTO template increases with increasing immersion time but sheet resistance decreases. The high surface area of FTO template can decrease sheet resistance because of increasing conducting Pt surface area. Based on AFM results, the surface area of Pt layer is highest with HCl concentration of 0.016 M and immersion time of 60 s. The DSSC were consisted of working electrode (FTO, TiO_2 blocking layer and TiO_2 porous layer) sandwich with the Pt counter electrode and iodide liquid electrolyte, respectively. The cell efficiency was measured by solar simulator operation at 1000 mW/cm~(-2). The maximum cell efficiency of 2.78% was achieved from Pt deposition time of 60 min. Our results show that this simple preparation of Pt layer can be applied as a counter electrode for dye-sensitized solar cell.
机译:在这项工作中,我们专注于在染料敏化太阳能电池(DSSC)中用作对电极的PT层的表面积。通过在FTO模板上涂覆PT层来制备Pt层的增加表面积。通过将FTO玻璃浸渍在盐酸(HCl)酸中,浓度为0.016,0.324和1.62m,分别为5,15,30,45和60s的浸渍时间来制造FTO模板。通过溶解在HCl溶液中的Pt(NH_3)_4Cl_2粉末的电化学技术涂覆PT层对照电极。将涂层电流固定在25mA中,并且沉积时间从10,30至60分钟变化。通过van der Pauw技术,原子力显微镜(AFM)和X射线衍射检查FTO衬底的薄层电阻,表面粗糙度和结构性能。 AFM图像表明FTO模板的表面粗糙度随着浸入时间的增加而增加,但薄层电阻降低。 FTO模板的高表面积可以降低薄层电阻,因为导电PT表面积增加。基于AFM结果,PT层的表面积最高,HCl浓度为0.016μm,浸入时间为60秒。 DSSC分别由与Pt对电极和碘化物液体电解质的工作电极(FTO,TiO_2阻断层和TiO_2多孔层)组成。通过在1000mW / cm〜(2)的太阳模拟器操作测量电池效率。从Pt沉积时间达到60分钟的最大电池效率为2.78%。我们的结果表明,这种简单的PT层制备可以用作染料敏化太阳能电池的对电极。

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