Preparation of ZnO/TiO2 Nanocomposite Sensitized Mangosteen Rind (Garcinia mangostana L) Dye for Light Harvesting Efficiency in Solar Cell

Arya Dwi Cahyo Utomo, Muh. Nur Khoiru Wihadi
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引用次数: 1

Abstract

The preparation of ZnO/TiO2 nanocomposite is done using the sol-gel method for light harvesting in dye-sensitized solar cell (DSSC). The titanium dioxide (TiO2) compound was added with different ratios to the ZnO matrix and measured its effect on solar cells based on the DSSC system. The powder X-ray diffractions of nanocomposite revealed anatase (TiO2­) and wurtzite (ZnO­) phases have the highest peak at 25.26° and 36.97°, respectively. The energy gap was observed by diffuse reflectance-ultra violet (DR-UV) spectroscopy and it revealed that the optimum performance of nanocomposite was 3.16 eV for the 1:2 ratio. The optimum power efficiency was 2.4% with 3.6 cm2 active area, Voc= 788 mV and Isc=3.39 mA, respectively. The scanning electron microscope-energy dispersive X-ray (SEM-EDX) demonstrated the diversity of surface morphology depends on the ratio of TiO2 in the nanocomposite. This shows the addition of TiO2 to the ZnO matrix influenced the structure of the nanocomposite, which can be applied as DSSC electrodes.
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ZnO/TiO2纳米复合敏化山竹皮染料的制备及其对太阳能电池光捕获效率的影响
采用溶胶-凝胶法在染料敏化太阳能电池(DSSC)中制备了ZnO/TiO2纳米复合材料。将二氧化钛(TiO2)化合物以不同比例加入到ZnO基体中,并基于DSSC系统测量其对太阳能电池的影响。粉末x射线衍射结果表明,纳米复合材料的锐钛矿(TiO2 -)相和纤锌矿(ZnO -)相的峰值分别位于25.26°和36.97°。通过漫反射-紫外(DR-UV)光谱分析发现,当比例为1:2时,纳米复合材料的最佳性能为3.16 eV。最优功率效率为2.4%,有效面积3.6 cm2, Voc= 788 mV, Isc=3.39 mA。扫描电子显微镜-能量色散x射线(SEM-EDX)显示,纳米复合材料表面形貌的多样性取决于TiO2在纳米复合材料中的比例。这表明在ZnO基体中加入TiO2影响了纳米复合材料的结构,可以作为DSSC电极使用。
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