Renewable flower-based dye-sensitized solar cells using natural dye and natural carbon counter electrode†

IF 3.2 Q2 CHEMISTRY, PHYSICAL
Energy advances Pub Date : 2025-05-31 DOI:10.1039/D5YA00086F
Shunjian Xu, Ping Huang, Wei Zhong, Yongping Luo, Haiyan Fu, Zonghu Xiao, Hong Jin and Yike Liu
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Abstract

To advance the application of renewable biowaste in the renewable energy field, biowaste-derived natural dyes (BND) and biowaste-derived carbon materials (BCM) were individually prepared from five common flowers as raw materials and then facilely integrated into dye-sensitized solar cells (DSSCs). The five extracted BNDs contained anthocyanins with subtly different molecular structures, which were employed as photosensitizers to assemble mono-biowaste based devices with a Pt counter electrode, each of which showed a significantly different conversion efficiency (η), varying from 0.17% to 0.43%. The five pyrolyzed BCMs with an amorphous structure were used as counter electrodes to configure mono-biowaste based devices with the photosensitizer N719, and their η values ranged between 1.08% and 2.13%. The high efficiency of the BCM-based devices was mainly derived from their unique microstructure and the N,S-codoped oxygen-group-containing carbon skeleton of the BCM, which provided more catalytic active sites for reduction of the electrolyte. A dual-biowaste device based on crape myrtle violet flower with an η of 0.181% was finally fabricated by using the corresponding BND and BCM. Moreover, a combination strategy was carried out by introducing the BND extracted from willow leaf into the cell with the pyrolyzed crape myrtle violet flower BCM, resulting in an enhanced η of 0.32%.

Abstract Image

使用天然染料和天然碳对电极†的可再生花基染料敏化太阳能电池
为推进可再生生物废弃物在可再生能源领域的应用,以5种常见花卉为原料,分别制备了生物废弃物衍生天然染料(BND)和生物废弃物衍生碳材料(BCM),并将其整合到染料敏化太阳能电池(DSSCs)中。所提取的5种bnd所含的花青素具有细微的分子结构差异,可作为光敏剂与Pt对电极组装单生物废弃物基器件,每种bnd的转化效率(η)在0.17% ~ 0.43%之间。将这5种具有非晶结构的热解bcm作为反电极,用光敏剂N719配置单生物废弃物基器件,其η值在1.08% ~ 2.13%之间。BCM基器件的高效率主要源于其独特的微观结构和BCM的N, s共掺杂含氧碳骨架,为电解液的还原提供了更多的催化活性位点。最后利用相应的BND和BCM制备了以紫薇花为原料的双废装置,η值为0.181%。将柳叶提取的BND与紫薇花的BCM进行组合,η值提高了0.32%。
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CiteScore
1.80
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