首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Fabrication of textile fabric counter electrodes using activated charcoal doped multi walled carbon nanotube hybrids for dye sensitized solar cells
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Fabrication of textile fabric counter electrodes using activated charcoal doped multi walled carbon nanotube hybrids for dye sensitized solar cells

机译:使用活性炭掺杂的多壁碳纳米管杂化材料制造织物对电极,用于染料敏化太阳能电池

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Textile fabric electrodes have attained increasing demand as they offer the benefits of light weight, flexibility, and low cost. In this work, we fabricated an activated charcoal doped multi walled carbon nanotube (AC doped MWCNT) hybrid and printed on polyester woven fabric. This carbon fabric composite was used as a counter electrode (CE) in dye sensitized solar cells (DSSCs), so as to replace expensive platinized FTO (fluorinated tin oxide) glass. A variety of mesoporous carbon structures were synthesized by using different types of charcoal together with MWCNTs. Morphological characterization revealed that the highly porous defect rich carbon structure consists of synchronized features of 3D carbon decorated with the MWCNT network. The excessive oxygen surface groups can reduce a large amount of polymer gel electrolyte and locate manifold catalytic sites for the reduction of tri-iodide (I-3(-)). Electrochemical investigations confirmed that this carbon fabric composite has high electrocatalytic activity (ECA) and exhibited a very low charge transfer resistance (R-CT) of 1.38 Omega. The resulting N719 DSSCs consisting of this unique carbon coated textile fabric CE filled with the polymeric electrolyte show a power conversion efficiency (PCE) of 7.29%, outperforming the platinized FTO glass CE. Such facile assembly of this novel textile fabric CE is quite promising for the mass production of next generation textile structured solar cells.
机译:纺织织物电极由于具有重量轻,柔韧性和低成本的优点而获得了越来越高的需求。在这项工作中,我们制造了一种活性炭掺杂的多壁碳纳米管(AC掺杂的MWCNT)混合材料,并印刷在聚酯机织织物上。这种碳纤维复合材料被用作染料敏化太阳能电池(DSSC)中的对电极(CE),以取代昂贵的镀铂FTO(氟化氧化锡)玻璃。通过使用不同类型的木炭和MWCNT合成了各种介孔碳结构。形态学特征表明,高度多孔的富含碳的缺陷结构由用MWCNT网络装饰的3D碳的同步特征组成。过量的氧表面基团可还原大量的聚合物凝胶电解质,并定位用于还原三碘化物(I-3(-))的歧管催化部位。电化学研究证实,这种碳纤维复合材料具有较高的电催化活性(ECA),并且具有非常低的1.38Ω电荷转移阻力(R-CT)。由填充有聚合物电解质的这种独特的碳涂层织物CE构成的N719 DSSC的功率转换效率(PCE)为7.29%,优于镀铂FTO玻璃CE。这种新颖的纺织品CE的这种容易组装对于下一代纺织品结构化太阳能电池的大规模生产是非常有前途的。

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