染料敏化太阳能电池(DSSC)作为轻质TiO2纳米颗粒与各种溶剂萃取色素芒果皮(藤黄)的效率提高

H. Hardani, A. Hidayatulloh, A. L. Maesary
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引用次数: 5

摘要

染料敏化太阳能电池(DSSC)是一种由光电极、染料、电解质和对电极组成的光化学电池。在DSSC中使用染料的目的是将吸收光谱扩展到可见光,因为可见光约有96%的能量来自阳光。本文介绍了从植物中提取的天然染料在DSSC中应用的吸光度性质和电导率的一些实验数据。吸光度测试使用紫外可见1601 PC分光光度计和电性能测试使用Elkahfi 100 /米I-V。以山竹皮色素染料提取物(Garcinia mangostana)为原料,采用旋涂和滑铸等多种涂层技术制备了DSSC。结果表明,天然原料提取的天然染料吸光度在380 ~ 520 nm范围内,其中山竹果皮色素(Garcinia mangostana)的导电率最高。采用AM Simulator 1.5G (100 mW / cm2)柴油模拟器进行测试,结果表明TiO2前驱体的体积影响DSSC太阳能电池的性能,采用滑铸技术制备的山竹皮染料的总转换效率为0.084%,采用自旋涂层技术制备的山竹皮染料的总转换效率为0.092%。
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THE EFFICIENCY OF DYE-SENSITIZED SOLAR CELL (DSSC) IMPROVEMENT AS A LIGHT PARTY TiO2-NANO PARTICLE WITH EXTRACT PIGMENT MANGOSTANA PEEL (Garcinia Mangostana) WITH VARIOUS SOLVENTS
The dye-sensitized solar cell (DSSC) is one of the photochemical electrical cells consisting of a photoelectrode, dye, electrolyte, and counter electrode. The purpose of using dyes in the DSSC is to extend the absorption spectrum to visible light because visible light has about 96% energy from sunlight. This article presents some experimental data on the nature of absorbance and the conductivity of natural dyes extracted from the plant as an application in the DSSC. Absorbance test using Spectrophotometer UV Visible 1601 PC and electrical properties test using Elkahfi 100 / Meter I-V. DSSC fabrication has been done using dye extract of mangosteen skin pigment (Garcinia mangostana) with a variety of coating technique of Spin Coating and Slip Casting. The results show that natural dyes from natural material extraction have an absorbance spectrum of 380-520 nm range and the greatest conductivity is owned by mangosteen fruit skin pigment (Garcinia mangostana). From the results of the test using AM Simulator 1.5G (100 mW / cm2) diesel simulator, it was found that the volume of TiO2 precursors affected the performance of DSSC solar cells and the overall conversion efficiency was 0.084% for the mangosteen skin dye by slip casting technique and 0.092% for the mangosteen skin dye by spin coating technique.
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