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Photovoltaic studies of hybrid metal oxide semiconductors as photo anode in dye sensitized solar cells

机译:杂交金属氧化物半导体作为染料光阳极敏化太阳能电池的光伏研究

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Dye sensitized solar cells (DSSCs) have fascinated researchers across the globe since their inception in 1991, due to their easy preparation protocols compared to the conventional silicon solar cells and eco-friendly nature. Most of the time best choice of metal oxide semiconductor is TiO_2 because of its high electron injection rate. But on the other hand, wide band gap semiconductor such as ZnO has higher stability and electron mobility. We anticipated that combination of these two should help us to get the better devices. In this study, working electrode modification was done by using hybrid metal oxides as in the fabrication of DSSC to increase the efficiency of the device. ZnO nanoparticles were synthesized by sol-gel process. The morphology, porosity and grain size of the ZnO was studied by SEM analysis. The Particle size was further confirmed by XRD analysis. Bulk and nano TiO_2 were blended individually with nano ZnO and their photo voltaic parameters were examined. Used combinations were (i) TiO_2-n (ii) TiO_2-b (iii) ZnO-n (iv) TiO_2-n: TiO_2-b in 1:1 ratio (v) ZnO-n: TiO_2-n in 1:1 ratio (vi) ZnO-n:TiO_2-b in 1:1 ratio respectively along with N719 dye. After assembling the electrodes, the current density-voltage characteristics of each of the combinations were evaluated. It was found that among all the combinations TiO_2 nano and bulk composition in the proportion 1:1 is showing the optimum efficiency than the other compositions.
机译:自1991年成立以来,染料敏化太阳能电池(DSSCs)对全球的研究人员令人着迷于1991年,由于它们的易于制备方案与传统的硅太阳能电池和环保性质相比,因此易于制备方案。由于其高电子注入速率,大部分时间最佳选择金属氧化物半导体是TiO_2。但另一方面,诸如ZnO的宽带隙半导体具有更高的稳定性和电子迁移率。我们预计这两者的组合应该帮助我们获得更好的设备。在该研究中,通过使用与DSSC的制造中的混合金属氧化物使用混合金属氧化物来完成工作电极改性以提高装置的效率。通过溶胶 - 凝胶法合成ZnO纳米粒子。通过SEM分析研究了ZnO的形态,孔隙率和晶粒尺寸。通过XRD分析进一步证实粒度。将块状和纳米TiO_2用纳米ZnO单独混合,并检查它们的光伏参数。二手组合是(i)TiO_2-N(II)TiO_2-B(III)ZnO-N(IV)TiO_2-N:TiO_2-B:1:1的比例(V)ZnO-N:TiO_2-N,1:1比例(VI)ZnO-N:TiO_2-B分别与N719染料分别为1:1。在组装电极之后,评估每种组合的电流密度 - 电压特性。发现,在比例1:1中的所有组合TiO_2纳米和块状组合物中,显示出比其他组合物的最佳效率。

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