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采用一种新颖方法填充聚环氧乙烷-双马来酰亚胺聚合物共混电解质的准固态染料敏化太阳能电池的优化性能。

Optimized performance of quasi-solid-state DSSC with PEO-bismaleimide polymer blend electrolytes filled with a novel procedure.

作者信息

Lee Dong Ha, Sun Kyung Chul, Qadir Muhammad Bilal, Jeong Sung Hoon

出版信息

J Nanosci Nanotechnol. 2014 Dec;14(12):9377-82. doi: 10.1166/jnn.2014.10131.

Abstract

Dye-sensitized solar cell (DSSC) is an attractive renewable energy technology currently under intense investigation. Electrolyte plays an important role in the photovoltaic performance of the DSSCs and many efforts have been contributed to study different kinds of electrolytes with various characteristics such as liquid electrolytes, polymer electrolytes and so on. In this study, DSSC is developed by using quasi-solid electrolyte and a novel procedure is adopted for filling this electrolyte. The quasi-solid-state electrolyte was prepared by mixing Poly ethylene oxide (PEO) and bismaleimide together and constitution was taken as PEO (15 wt%) at various bismaleimide concentrations (1, 3, 5 wt%). The novel procedure of filling electrolyte consists of three major steps (first step: filling liquid electrolyte, second step: vaporization of liquid electrolyte, third step: refilling quasi-solid-state electrolyte). The electrochemical and photovoltaic performances of DSSCs with these electrolytes were also investigated. The electrochemical impedance spectroscopy (EIS) indicated that TiO2/Dye/electrolyte impedance is reduced and electron lifetime is increased, and consequently efficiency of cell has been improved after using this novel procedure. The photovoltaic power conversion efficiency of 6.39% has been achieved under AM 1.5 simulated sunlight (100 W/cm2) through this novel procedure and by using specified blend of polymers.

摘要

染料敏化太阳能电池(DSSC)是一种目前正在深入研究的具有吸引力的可再生能源技术。电解质在DSSC的光伏性能中起着重要作用,人们已经做出了许多努力来研究具有各种特性的不同种类的电解质,如液体电解质、聚合物电解质等。在本研究中,采用准固态电解质开发了DSSC,并采用了一种新颖的方法来填充这种电解质。通过将聚环氧乙烷(PEO)和双马来酰亚胺混合制备准固态电解质,在不同双马来酰亚胺浓度(1、3、5 wt%)下,其组成以PEO(15 wt%)为准。填充电解质的新颖方法包括三个主要步骤(第一步:填充液体电解质,第二步:液体电解质蒸发,第三步:重新填充准固态电解质)。还研究了使用这些电解质的DSSC的电化学和光伏性能。电化学阻抗谱(EIS)表明,使用这种新颖方法后,TiO2/染料/电解质的阻抗降低,电子寿命增加,因此电池效率得到了提高。通过这种新颖方法并使用特定的聚合物混合物,在AM 1.5模拟太阳光(100 W/cm2)下实现了6.39%的光伏功率转换效率。

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