采用溶胶-凝胶工艺合成 ZnO-TiO2 纳米粒子及其在太阳能电池半导体中的应用

N. Saridewi, Aditya Riyanti, I. Aziz, Biaunik Niski Kumila, Ade Lian Risa Adinda
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引用次数: 0

摘要

ZnO-TiO2 半导体可用于染料敏化太阳能电池(DSSC)装置,作为可再生能源的替代品。这种半导体可通过溶胶-凝胶法合成。本研究的目的是利用山竹皮提取物染料合成用于 DSSC 器件的 TiO2 掺杂 ZnO 纳米粒子半导体。在合成 ZnO-TiO2(TiO2 与 ZnO 的比例分别为 0、3、5、7 和 10%)的过程中,牛油果籽被水萃取,作为封端剂。XRD 结果表明 ZnO-TiO2 掺杂成功,原因是 2θ 移动和晶格的变化。得到的平均晶体尺寸为 33.7972 nm。扫描电镜结果表明,氧化锌的粒径范围为 45-100 nm。山竹果皮提取物的紫外可见染料测量显示,在 296-483 nm 波长处有一个吸收峰,相应的带隙能值为 3.04 eV。紫外可见 DRS ZnO-TiO2 测量的平均带隙能为 3.1425 eV,ZnO 为 3.1915 eV。在 ZnO-TiO2 半导体含量为 7% 时,DSSC 的最高效率值为 2.15 x 10-2%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthesis of ZnO-TiO2 Nanoparticles by Sol-Gel Process and its Application for Solar Cell Semiconductor
ZnO-TiO2 semiconductor can be used in Dye-Sensitized Solar Cell (DSSC) devices as an alternative to renewable energy. This semiconductor can be synthesized by sol-gel method. The objective of this study is synthesizing the TiO2-doped ZnO nanoparticle semiconductors for DSSC devices with mangosteen peel extract dye. Avocado seeds were extracted with water, as a capping agent in the synthesis of ZnO-TiO2 (TiO2 ratio of 0,3,5,7 and 10% to ZnO). XRD results show the success of ZnO-TiO2 doping, due to the 2θ shift and changes in the crystal lattice. The average crystal size obtained was 33.7972 nm. The SEM results showed that the particle size of ZnO ranged from 45-100 nm. The UV-Vis dye measurements of mangosteen peel extract showed an absorption peak at 296-483 nm wavelength, with a corresponding band gap energy value of 3.04 eV. The UV-Vis DRS ZnO-TiO2 measurements have an average band gap energy of 3.1425 eV and ZnOof 3.1915 eV. The highest DSSC efficiency value is 2.15 x 10-2% at 7% ZnO-TiO2 semiconductor.
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来源期刊
CiteScore
0.80
自引率
0.00%
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15
审稿时长
24 weeks
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