Synthesis of Conjugated bis-Schiff Base and Their Complexes as Dye-Sensitizer for Dye Sensitized Solar Cell (DSSC) Application

Q4 Biochemistry, Genetics and Molecular Biology Borneo Journal of Resource Science and Technology Pub Date : 2022-12-31 DOI:10.33736/bjrst.4820.2022
NURSYAFIRA ADZIRA HALMI, MENG GUAN TAY
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Abstract

Schiff base and their metal complexes have been widely used as photovoltaic materials due to their excellent π-electron transfer properties along the molecule. A total of eleven conjugated symmetrical bis-Schiff base and their complexes with different π-spacers have been synthesized and spectroscopically characterized in order to investigate their conversion efficiency in dye-sensitizer solar cells (DSSC). All compounds were either substituted with hydroxy (-OH) or methoxy (-OMe) as the electron donor and difluoro boron (BF2) as the electron acceptor or without any substituent. All compounds were applied as dye-sensitizer in DSSC using titanium (IV) oxide (TiO2) coated on a fluoride doped tin oxide glass as the working electrode and electric paint containing carbon black, whereas graphene coated indium tin oxide glass as the counter electrode. The power conversion efficiencies of the eleven bis-Schiff bases were compared to N3 Dye as the benchmark standard. The results showed that the compound with aromatic ring bridge as the π-spacer and -OMe substituent gave the highest efficiency at 0.0691% whereas the compound with aromatic ring and BF2 gave the lowest efficiency at 0.0012%.
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用于染料敏化太阳能电池(DSSC)的共轭双希夫碱及其配合物的合成
希夫碱及其金属配合物由于其优异的分子π-电子转移性能,已被广泛用作光伏材料。为了研究它们在染料敏化太阳能电池(DSSC)中的转化效率,共合成了11种共轭对称双希夫碱及其与不同π-间隔物的配合物,并对其进行了光谱表征。所有化合物都被羟基(-OH)或甲氧基(-OMe)作为电子供体和二氟硼(BF2)作为电子受体取代,或者没有任何取代基。所有化合物都用作DSSC中的染料敏化剂,使用涂覆在氟掺杂的氧化锡玻璃上的氧化钛(IV)(TiO2)作为工作电极和含有炭黑的电涂料,而石墨烯涂覆的氧化铟锡玻璃作为对电极。将11种双希夫碱的功率转换效率与作为基准标准的N3染料进行了比较。结果表明,以芳环桥为π-间隔基和-OMe取代基的化合物的效率最高,为0.0691%,而以芳环和BF2的化合物的最低效率为0.0012%。
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来源期刊
Borneo Journal of Resource Science and Technology
Borneo Journal of Resource Science and Technology Agricultural and Biological Sciences-Forestry
CiteScore
0.70
自引率
0.00%
发文量
16
审稿时长
12 weeks
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