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Effect of Ga doped TiO2 photoanode on photovoltaic performances of natural dye-sensitized solar cells

机译:GA掺杂TiO 2 光电磁极对天然染料敏化太阳能电池光伏性能的影响

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We investigated the electric performances of DSSCs (Dye Sensitized Solar Cells) using TiO2 (Titanium dioxide) photoanodes doped with Gallium (Ga) for different concentrations (0.25, 0.5 and 1 mol %) and sensitized with a mixture natural dye (mallow with anthocyanin). The doped and undoped layers of photoanode were deposited with doctor blade method. The main properties like structure and optical absorbance of photoanodes doped with Ga were investigated. XRD spectra reveal that studied films exhibit tetragonal structure of anatase TiO2 showing a small shift to the higher diffraction angle when the concentration of the Ga increases. The crystallites have an average size in the range of 23-28 nm. UV-Vis absorption revealed that Ga addition enhances the light absorption in the visible range by shifting the absorption of TiO2 nanoparticles to visible region. The energy band gap of realized nanoparticles was decreased when the dopant concentration increases. It passes from 3.26 eV in pure TiO2 to 3.06 eV for 0.5%Ga-TiO2. The efficiency of realized DSSC was increased considerably compared to that using pure TiO2 photoanode. The current versus voltage (I-V) characteristics reveal that the DSSCs prepared using Ga-TiO2 layer have significantly improved parameters. In fact, the DSSC fabricated with 0.5%Ga-TiO2 has a high power conversion efficiency of 0.3%, short current density of 2.12 mA/cm2 and open circuit voltage of 0.45 V.
机译:我们研究了使用二氧化钛的DSSC的电气性能(染料敏化太阳能电池) 2 (二氧化钛)的光阳极掺杂有镓(Ga)为不同浓度(0.25,0.5和1摩尔%),并与天然混合物敏化染料(锦葵与花青素)。光电阳极的掺杂和未掺杂层沉积刮刀法。状结构和掺杂有镓的光电阳极光学吸收的主要性能进行了研究。 XRD谱图显示,研究薄膜呈现锐钛矿型二氧化钛的四方结构 2 示出的小的移位到时中的Ga的浓度增加了更高的衍射角。微晶具有在23-28纳米范围内的平均尺寸。 UV-Vis吸收表明镓除了通过移动TiO 2的吸收提高在可见光范围内的光吸收 2 纳米粒子对可见光区。实现纳米粒子的能带隙的掺杂剂浓度增加时降低。它通过从在纯粹的TiO 3.26电子伏特 2 到3.06电子伏特为0.5%Ga的二氧化钛 2 。实现DSSC的效率显着增加相比,使用纯粹的TiO 2 光阳极。相对于电压的电流(I-V)特性揭示,DSSC中使用Ga的氧化钛制备的 2 层具有改进的显著参数。事实上,DSSC用0.5%Ga的制造的TiO 2 具有0.3%的高功率转换效率,为2.12毫安/厘米的短路电流密度 2 0.45 V.的和开路电压

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