Utilization of leaf and fruit extracts of kedondong (Spondias dulcis Forst) as a supporting material for energy conversion in dye sensitized solar cells and electrochemical cells

A. Ibrahim, Boima Situmeang, A. Rifa’i, Afif Hidayatul Mustafid
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引用次数: 1

Abstract

This study aims to obtain a dye sensitized solar cell (DSSC) prototype and a voltaic cell prototype using the kedondong plant (Spondias dulcis Forst). Kedondong leaves as a source of chlorophyll were deliberately chosen to be in line with the use of kedondong fruit as a material for electrochemical cells, so that two research results could be obtained from the kedondong plant. This research is for the application of scientific development, increasing the added value of kedondong plant, and as support for the use of environmentally friendly energy. Research methods in general are chlorophyll extraction, citric acid isolation, chlorophyll testing, DSSC assembly, electrochemical cell assembly, and performance testing for both DSSC and electrochemical cells. The analysis results show that typical peaks appear for the functional groups in chlorophyll at certain wave numbers. Hydroxyl (-OH) groups appear in the range of 3650 - 3200 cm-1, the C=C group at 1700 - 1500 cm-1, the C-N group at 1350 - 1000 cm-1, and the C-O group at 1300 - 1000 cm-1. Quantitative testing used a UV-Vis spectrophotometer at 645 nm and 633 nm, the results obtained were chlorophyll a was 4.52 mg/L, chlorophyll b was 8.43 mg/L, and total chlorophyll was 12.95 mg/L. The DSSC prototype performance test with a size of only 2.5 cm2, can produce a minimum voltage of 30.1 mV and a maximum of 280 mV. The electrochemical test of kedondong citric acid extract showed that the value of the electric voltage ranged from 121 to 630 mV. Keywords: Kedondong, Chlorophyll, DSSC, Citric acid, Electrochemical cells
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在染料敏化太阳能电池和电化学电池中作为能量转换支撑材料的沙斛叶和果实提取物的利用
本研究旨在利用kedondong植物(Spondias dulcis forest)获得染料敏化太阳能电池(DSSC)原型和光伏电池原型。为了符合Kedondong果实作为电化学电池材料的用途,特意选择了Kedondong叶子作为叶绿素的来源,从而可以从Kedondong植物中获得两个研究结果。本研究是为了应用科学发展,增加kedongdong工厂的附加值,并为环保能源的使用提供支持。一般的研究方法有叶绿素提取、柠檬酸分离、叶绿素测试、DSSC组装、电化学电池组装以及DSSC和电化学电池的性能测试。分析结果表明,叶绿素中官能团在一定波数下出现典型峰。羟基(- oh)在3650 ~ 3200 cm-1范围内出现,C=C基团在1700 ~ 1500 cm-1范围内出现,C- n基团在1350 ~ 1000 cm-1范围内出现,C- o基团在1300 ~ 1000 cm-1范围内出现。采用紫外-可见分光光度计在645 nm和633 nm处进行定量检测,测得叶绿素a为4.52 mg/L,叶绿素b为8.43 mg/L,总叶绿素为12.95 mg/L。DSSC原型性能测试的尺寸仅为2.5 cm2,可以产生最小30.1 mV和最大280 mV的电压。对苦冬冬柠檬酸提取液进行电化学测试,结果表明,提取液的电压范围为121 ~ 630 mV。关键词:Kedondong,叶绿素,DSSC,柠檬酸,电化学电池
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