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Effect of TiO2 blocking layer on photovoltaic performances of solar cells sensitized with N719

机译:TiO2阻断层对N719致敏太阳能电池光伏性能的影响

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In this study we employ a synthetic dye (ruthenizer 535-bisTBA (N719)) as a sensitizer for dye solar cells without $(Cell_{NBL}$) and based blocking layer $(Cell_{BL}$). The photoanodes prepared with doctor blade were analyzed by X’pert Pro X-ray diffractometer to identify the anatase structure. The optical properties of the dyes and sensitized photoanodes in the region 400–800 nm were determined by UV–Vis spectrophotometer. The current-Voltage (I-V) characteristics of realized DSSCs were measured in AM1.5 solar irradiance spectra at ambient temperature using Keithley 6517A multimeter. The blocking layer leads to the enhancement of photoconversion efficiency (PCE) by physical separation of the substrate FTO and the electrolyte. There is a remarkable increase of Jsc which reaches 8.88 mA.cm$^{-2}$ compared to the cell without blocking layer, leading an efficiency of 3.9% under power radiation equal to 100mWcm$^{-2}$. The obtained results show a simple way to improve the performance of dye-sensitized solar cells based on TiO2
机译:在本研究中,我们使用合成染料(Ruthenizer 535-Bistba(N719))作为没有$ $(Cell_ {NBL} $)的染料太阳能电池的敏化剂,并且基于Cell_ {BBL} $(Cell_ {Bl} $)。通过X'Pert Pro X射线衍射仪分析使用刮刀制备的光电曲线,以鉴定锐钛矿结构。通过UV-Vis分光光度计测定区域400-800nm中的染料和敏化光阳极的光学性质。使用KEITHLEY 6517A万用表在环境温度下在AM1.5太阳辐照度光谱中测量实现的DSSC的电流 - 电压(I-V)特性。阻挡层通过基板FTO和电解质的物理分离而导致光电转换效率(PCE)的提高。 j有一个显着的增加 sc 达到8.88 ma.cm $ ^ { - 2} $与电池相比,没有阻挡层,电源辐射下的效率为3.9%,等于100mWcm $ ^ { - 2} $。所得结果表明,提高基于TIO的染料敏化太阳能电池性能的简单方法 2

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