浸渍镀膜法研究了ZnO掺杂银薄层浸渍量对带隙的影响

Farhan El Maulid, -. Yohandri, H. Sanjaya
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引用次数: 0

摘要

化石能源的可用性日益减少。因此,需要一种新的可再生能源解决方案。可再生能源之一是DSSC。DSSC是一种基于光电化学的太阳能电池,具有成本低、制备难度小、环境友好等优点。DSSC由工作电极、染料、电解质和反电极组成。本研究旨在探讨浸渍镀膜法制备薄膜时工作电极的性能及其对DSSC效率的影响。本研究属于实验性研究。本研究采用溶胶-凝胶法制备了9% ZnO/Ag的半导体工作电极。对工作电极进行浸渍1、3、5次涂敷。用UV-DR光谱仪对9% ZnO/Ag薄层进行了表征。结果表明,浸泡1次、3次和5次后,9% Ag掺杂ZnO在ITO衬底上的能带分别为3.09 eV、3.10 eV和3.12 eV。基于这些数据,将其应用于DSSC,在电极1时间dip时显示出最佳效率。因此,浸没量越大,DSSC的效率越低。化石能源的可用性日益减少。因此,需要一种新的可再生能源解决方案。可再生能源之一是DSSC。DSSC是一种基于光电化学的太阳能电池,具有成本低、制备难度小、环境友好等优点。DSSC由工作电极、染料、电解质和反电极组成。本研究旨在探讨浸渍镀膜法制备薄膜时工作电极的性能及其对DSSC效率的影响。本研究属于实验性研究。本研究采用溶胶-凝胶法制备了9% ZnO/Ag的半导体工作电极。对工作电极进行浸渍1、3、5次涂敷。用UV-DR光谱仪对9% ZnO/Ag薄层进行了表征。结果表明,浸泡1次、3次和5次后,9% Ag掺杂ZnO在ITO衬底上的能带分别为3.09 eV、3.10 eV和3.12 eV。基于这些数据,将其应用于DSSC,在电极1时间dip时显示出最佳效率。因此,浸没量越大,DSSC的效率越低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
THE EFFECT OF THE AMOUNT OF IMMERSION OF ZnO DOPING Ag THIN LAYER ON BAND GAP WITH DIP COATING METHOD
The availability of fossil energy is decreasing day by day. Therefore, a New Renewable Energy solution is needed. One of the renewable energy is DSSC. DSSC is a photoelectrochemical-based solar cell that has a lower cost, less difficult preparation, and is environmentally friendly. DSSC be composed of working electrode, dye, electrolyte, and counter electrode. This researchintend to investigate the performance of the working electrode where the manufacture of a thin film using the dip coating method with variations in immersion and its effect on the efficiency of DSSC. This research is an experimental research. In this study, the semiconductor working electrode was made based on 9% ZnO/Ag synthesis by going through a sol-gel process. The working electrode was coated with variations of immersion 1, 3 and 5 times. The 9% ZnO/Ag thin layer was characterized by UV-DR Spectrometer. Based on the results, 9% Ag doped ZnO deposited on the ITO substrate with variations of immersion 1, 3 and 5 times showed, a band gap of 3.09 eV, 3.10 eV and 3.12 eV, respectively. Based on these data, it was applied to DSSC with the optimum efficiency shown at the electrode 1 time dip. Therefore, the greater the amount of immersion, the lower the efficiency of the DSSC.The availability of fossil energy is decreasing day by day. Therefore, a New Renewable Energy solution is needed. One of the renewable energy is DSSC. DSSC is a photoelectrochemical-based solar cell that has a lower cost, less difficult preparation, and is environmentally friendly. DSSC be composed of working electrode, dye, electrolyte, and counter electrode. This researchintend to investigate the performance of the working electrode where the manufacture of a thin film using the dip coating method with variations in immersion and its effect on the efficiency of DSSC. This research is an experimental research. In this study, the semiconductor working electrode was made based on 9% ZnO/Ag synthesis by going through a sol-gel process. The working electrode was coated with variations of immersion 1, 3 and 5 times. The 9% ZnO/Ag thin layer was characterized by UV-DR Spectrometer. Based on the results, 9% Ag doped ZnO deposited on the ITO substrate with variations of immersion 1, 3 and 5 times showed, a band gap of 3.09 eV, 3.10 eV and 3.12 eV, respectively. Based on these data, it was applied to DSSC with the optimum efficiency shown at the electrode 1 time dip. Therefore, the greater the amount of immersion, the lower the efficiency of the DSSC.
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