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首页> 外文期刊>Electrochimica Acta >First application of diethyl oxalate as efficient additive in high performance dye-sensitized solar cells based on iodide/triiodide electrolyte
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First application of diethyl oxalate as efficient additive in high performance dye-sensitized solar cells based on iodide/triiodide electrolyte

机译:草酸二乙酯作为高效添加剂在基于碘化物/三碘化物电解质的高性能染料敏化太阳能电池中的首次应用

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In this study, diethyl oxalate (DEOX) is applied as an effective inexpensive additive based iodide/triiodide electrolyte in the dye-sensitized solar cells (DSSCs). Addition the suitable amount of DEOX as 1 M into the electrolyte shows dramatically improvement in the short circuit current (J(sc)) and consequently, in the total conversion efficiency (eta). The fabricated devices based on N719 and 2-cyano-3-(4-(diphenylamino) phenyl) acrylic acid (TPA) sensitizers with modified electrolyte show the efficiency of 7.33% and 2.63% at an irradiation of AM1.5, and an 37% and 22% energy conversion efficiency increments, respectively. The boost in the photocurrent density mainly is due to the molecular complex formation between DEOX and redox species in the electrolyte solution that promotes the electrochemical properties of electrolyte. Also, electrochemical impedance measurements indicate adsorbing of DEOX on the semiconductor surface leads to an incensement in the lifetime (tau) and the electron density (n(s)) in the conduction band (CB) of TiO2 that shifts the Fermi level (Et) which leads to small enhancement in the V-oc. Adsorbing of DEOX on the titania surface retards the interfacial charge recombination that has a beneficial effect on the V-oc and J(sc). Furthermore, we compares the effect mechanisms of DEOX and 4-tert-butylpyridine (TBP) additives on the cell performance by applying different electrolytes containing the additives. These results show that TBP increases V-oc while DEOX additive has effect on the J(sc) and using of combination of additives leads to a remarkable improvement in eta. As a result, DEOX is a new promising co-additive which can be used for high efficient and low cost DSSCs. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项研究中,草酸二乙酯(DEOX)被用作染料敏化太阳能电池(DSSC)中一种有效的廉价的基于添加剂的碘化物/三碘化物电解质。在电解液中添加适量的DEOX作为1 M,可以显着改善短路电流(J(sc)),从而提高总转换效率(eta)。基于N719和2-氰基-3-(4-(二苯基氨基)苯基)丙烯酸(TPA)敏化剂和改性电解质制成的器件在AM1.5辐照下的效率为7.33%和2.63%,而在37 %和22%的能量转换效率分别增加。光电流密度的提高主要是由于电解质溶液中DEOX和氧化还原物质之间形成了分子配合物,从而促进了电解质的电化学性能。同样,电化学阻抗测量表明DEOX在半导体表面上的吸附导致TiO2的导带(CB)的寿命(tau)和电子密度(n(s))的增加,从而改变了费米能级(Et)导致V-oc的小幅提升。 DEOX在二氧化钛表面上的吸附会延迟界面电荷的重组,从而对V-oc和J(sc)产生有益的影响。此外,我们通过使用含有添加剂的不同电解质,比较了DEOX和4-叔丁基吡啶(TBP)添加剂对电池性能的影响机理。这些结果表明,TBP增加了V-oc,而DEOX添加剂对J(sc)有影响,并且添加剂组合的使用导致η的显着改善。因此,DEOX是一种新的有前途的共添加剂,可用于高效,低成本的DSSC。 (C)2015 Elsevier Ltd.保留所有权利。

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