EFEK PENAMBAHAN ATOM TEMBAGA (Cu) DAN PERAK (Ag) PADA MATERIAL AKTIF NANOMATERIAL ZnO SEL SURYA FOTOELEKTROKIMIA

Windayani Windayani, Iwantono Iwantono, Awitdrus Awitdrus, Z. Zulkarnain
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引用次数: 1

Abstract

ZnO material coated with Cu + Ag was successfully grown using seed mediated hydrothermal method at a temperature of 90° C for 8 hours with a variation of concentration of Ag, 10 mM, and 20 mM. The growth of ZnO nanomaterials was carried out on the FTO substrate (Flourine Tin Oxide). The Samples were characterized using, Field Emission Scanning Microscope (FESEM), and X-ray Diffraction (XRD). The FESEM photos show ZnOnanorod  coated with Cu + Ag have grown on FTO having a nanoflower shape that consructed from ZnOnanorods with their orientation . The XRD pattern shows five peaks at 2θ: 31.69 °; 34.36 °; 36,18 °; 47.52 °; and 56.4 °. Based on the results of the analysis of the OriginPro 8 program each peak in a row according to the crystal orientation (100), (002), (101), (012), and (110). The stongest line was found in the crystal plane (101). DSSC was fabricated using ZnO nanomaterial coated with Cu + Ag as active material, N719 dye, liquid electrolyte, and plastisol as catalyst on the counter electrode. The results of I-V measurements at halogen lamp with ilumination its intensity of 100 mW/cm2 of the cells has producedthe highest efficiency value based on Cu coated ZnO was based DSSC 0,98% with a Cu concentration of20mM.These results show that the addition of Cu layer can increase the efficiency of DSSC based on ZnO by 123% compared to ZnO without Cu based DSSC. Addition of Ag to active material of Cu coated ZnO nanomaterial did not have a positive effect on the efficiency of DSSC cells.
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铜原子(铜)和银(Ag)在活性材料纳米材料ZnO化学太阳能电池上的作用
采用种子介导水热法,在温度为90℃、Ag浓度为10 mM和20 mM的条件下,成功地生长了Cu + Ag包覆ZnO材料8小时。ZnO纳米材料在FTO衬底(氟锡氧化物)上生长。采用场发射扫描显微镜(FESEM)和x射线衍射仪(XRD)对样品进行了表征。FESEM照片显示,包裹Cu + Ag的zno阳极在FTO上生长,具有纳米花形状,由zno阳极与它们的取向构成。XRD谱图显示在2θ: 31.69°处有5个峰;34.36°;36岁,18°;47.52°;和56.4°。根据OriginPro 8程序的分析结果,将每个峰按晶体取向(100)、(002)、(101)、(012)、(110)排成一行。最强的线出现在晶体平面(101)。以包覆Cu + Ag的ZnO纳米材料为活性材料,N719染料、液体电解质和塑质溶胶为催化剂在对电极上制备DSSC。在卤素灯照射强度为100mw /cm2时,电池的I-V测量结果表明,Cu包覆ZnO的DSSC在Cu浓度为20mm时效率最高,为0.98%。结果表明,与不含Cu的ZnO DSSC相比,Cu层的加入可使ZnO DSSC的效率提高123%。在Cu包覆ZnO纳米材料的活性材料中添加Ag对DSSC电池的效率没有积极影响。
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