Synthesis of Novel Porphyrin Derivatives and Investigate their Application in Sensitized Solar Cells

M. Jaafar, L. Ahmed, R. T. Haiwal
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引用次数: 0

Abstract

Solar energy has significant advantages compared to conventional sources such as coal and natural gas, including no emissions, no need for fuel, and the potential for installation in a wide range of locations with access to sunlight. In this investigation, heterocyclic derivatives were synthesized from several porphyrin derivatives (4,4',4",4"'-(porphyrin-5,10,15,20-tetrayl) tetra benzoic acid) compound (3), obtained by reaction Pyrrole with 4-formyl benzoic acid. Subsequently, porphyrin derivative-component amides 5a, 5b, and 5c were produced by reacting compound (3) with amine derivatives at a 1:4 molar ratio. These derivatives exhibited varying sensitivities for utilization in solar cells, with compound 5a displaying the highest power conversion efficiency (PCE) at 1.37%, as determined by measuring the short circuit current (Jsc), open-circuit voltage (Voc), and fill factor (FF) (Jsc = 2.24 mA cm-2, Voc = 0.80 mV, FF = 76.5%). Meanwhile, compound 5c exhibited the lowest PCE at 0.94% (Jsc = 1.55 mA cm-2, Voc = 0.750 mV, FF = 76.4%).
新型卟啉衍生物的合成及其在敏化太阳能电池中的应用研究
与煤炭和天然气等传统能源相比,太阳能具有显著的优势,包括没有排放,不需要燃料,并且可以安装在广泛的有阳光照射的地方。本研究以吡咯与4-甲酰苯甲酸反应得到的几种卟啉衍生物(4,4',4 ',4 '-(卟啉-5,10,15,20-四基)四苯甲酸)化合物(3)为原料合成了杂环衍生物。随后,化合物(3)与胺衍生物以1:4的摩尔比反应,得到卟啉衍生物胺5a、5b和5c。这些衍生物在太阳能电池中的应用表现出不同的灵敏度,通过测量短路电流(Jsc)、开路电压(Voc)和填充因子(FF) (Jsc = 2.24 mA cm-2, Voc = 0.80 mV, FF = 76.5%),化合物5a的功率转换效率(PCE)最高,为1.37%。化合物5c的PCE最低,为0.94% (Jsc = 1.55 mA cm-2, Voc = 0.750 mV, FF = 76.4%)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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