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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Robust hybrid hydrogels with good rectification properties and their application as active materials for dye-sensitized solar cells: insights from AC impedance spectroscopy
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Robust hybrid hydrogels with good rectification properties and their application as active materials for dye-sensitized solar cells: insights from AC impedance spectroscopy

机译:具有良好整流性能的稳健杂化水凝胶及其作为染料敏化太阳能电池活性材料的应用:交流阻抗谱的见解

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Dihybrid (GP) and trihybrid (GPPS) hydrogels constructed by 5,5'-(1,3,5,7-tetraoxopyrrolo[3,4-f]isoindole-2,6-diyl) diisophthalic acid (P), graphene oxide (GO) and P, GO, and PEDOT: PSS are studied. The gelation occurs through H-bonding and pi-pi stacking interactions. A magnificent improvement occurs in the mechanical properties of the hybrid gels compared to the P gel. The dc-conductivity of GPPS xerogels is 4-5 orders of magnitude higher compared to the GP and P xerogels. The current-voltage (I-V) characteristic curves of the GP and GPPS gels exhibit rectification properties with the highest rectification ratio of 61; however, the xerogels exhibit semiconducting nature. The GP and GPPS xerogels exhibit photoresponse behavior, and the on-off cycles display a stable photocurrent for the latter system. Dye-sensitized solar cells (DSSCs) are fabricated taking the GPPS gels as active materials and the power conversion efficiency (PCE) increases with the increase of PEDOT:PSS concentration showing a maximum PCE of 4.5%. The IPCE curve shows an absorption range of 360-700 nm with the maximum absorbance of similar to 57%. Impedance spectroscopy indicates a considerable difference in the Nyquist plots between the xerogels and gels; the latter exhibit a semicircle with an additional spike corresponding to the Warburg impedance. The Cole-Cole plot of the DSSC consists of three semicircles and the equivalent resistance-capacitance circuits elucidate the PCE values.
机译:5,5'-(1,3,5,7-四氧杂吡咯并[3,4-f]异吲哚-2,6-二基)二间苯二甲酸(P),氧化石墨烯构成的双杂(GP)和三杂(GPPS)水凝胶(GO)和P,GO和PEDOT:研究了PSS。凝胶化是通过H键和pi-pi堆积相互作用发生的。与P凝胶相比,杂化凝胶的机械性能有了显着改善。与GP和P的干凝胶相比,GPPS的干凝胶的直流电导率高4-5个数量级。 GP和GPPS凝胶的电流-电压(I-V)特性曲线显示出整流性能,最高整流比为61;然而,干凝胶表现出半导体性质。 GP和GPPS干凝胶表现出光响应行为,而开-关循环则显示出后者系统的稳定光电流。以GPPS凝胶为活性材料制造的染料敏化太阳能电池(DSSC),功率转换效率(PCE)随着PEDOT:PSS浓度的增加而增加,最大PCE为4.5%。 IPCE曲线显示了360-700 nm的吸收范围,最大吸收率接近57%。阻抗谱表明干凝胶和凝胶之间的奈奎斯特曲线有很大的不同。后者表现出一个半圆形,并带有一个对应于Warburg阻抗的附加尖峰。 DSSC的Cole-Cole图由三个半圆组成,等效的电阻电容电路阐明了PCE值。

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