二氧化钛和马科塔水仙制备染料敏化太阳能电池(DSSC)提取

N. Hindryawati, I. A. Hiyahara, H. Saputra, M. S. Arief, G. P. Maniam
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摘要

染料敏化太阳能电池(DSSC)是一种低成本的太阳能电池。DSCC由光电极、染料、电解液和具有光电化学系统的对电极组成。本研究的目的是确定从Mahkota Dewa提取物中产生的DSSC的效率百分比。实验分为样品制备和提取、DSSC组装、扫描电镜(SEM)表征TiO2、电流和电压测试等多个阶段。结果表明,紫外-可见分光光度计对马科塔杜瓦提取物进行染色测试的最大波长为554 nm,吸光度为0.163,认为该波长为黄酮类化合物和花青素类化合物的波长。表征结果表明,该材料表面形貌呈球状、团块状。然而,在染料中浸泡后,TiO2层的表面形貌并没有在预期被染料覆盖的表面呈现球形。利用太阳光光源测量,在30% w/v浓度下,DSSC的最大电流和电压分别为21.8x10-4A和58.86 v,效率为22.43x10- 3%。6 d后,DSSC效率降低0.482%。
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Preparation of Dye-Sensitized Solar Cell (DSSC) Using TiO2 and Mahkota Dewa Fruit (Phaleria Macrocarpa (Scheff) Boerl.) Extract
A dye sensitized solar cell (DSSC) is a low-cost solar cell with attractive features. DSCC contains of photoelectrode, dye, electrolyte, and counter electrode with photoelectrochemical system. The aim of this research is to determine the percent efficiency produced by DSSC from the Mahkota Dewa extract. This was carried out in various stages, namely sample preparation and extraction, DSSC assembly, TiO2 characterization using Scanning Electron Microscopy (SEM), and testing its current and voltage. The results showed that the maximum wavelength of the Mahkota Dewa extract dye test using a UV-Vis spectrophotometer was 554 nm with an absorbance of 0.163, which was believed to be the wavelength of flavonoid and anthocyanin compounds. Based on the characterization results, surface morphology was spherical and agglomerated. However, after being soaked in the dye, the surface morphology of the TiO2 layer did not appear spherical on the surface that was expected to have been covered by the dye. The measurement using sunlight sources showed that the maximum current and voltage of DSSC with a concentration of 30% w/v was 21.8x10-4A and 58.86 V with an efficiency of 22.43x10-3 %. In addition, there was a 0.482% decrease in DSSC efficiency based on the storage time which lasted for a period of 6 days.
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