首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Improved conversion efficiency of 10% for solid-state dye-sensitized solar cells utilizing P-type semiconducting CuI and multi-dye consisting of novel porphyrin dimer and organic dyes
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Improved conversion efficiency of 10% for solid-state dye-sensitized solar cells utilizing P-type semiconducting CuI and multi-dye consisting of novel porphyrin dimer and organic dyes

机译:利用新型卟啉二聚体和有机染料组成的P型半导体Cui和多染料,改善固态染料敏化太阳能电池的转化效率为10%

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摘要

To realize highly efficient solid-state dye-sensitized solar cells (SDSCs), the absorption range of the dye should be extended to the near-IR range to increase short-circuit current density (J(sc)); a high J(sc) in turn requires a highly conductive p-type semiconductor. A newly developed dye (DIPDAB2) with a porphyrin dimer structure provided higher absorption coefficients than the conventional dye with a similar framework (DTBC) in the long wavelength range of 700-800 nm, leading to higher incident photon-to-current conversion efficiencies. The dip in the absorption spectrum of DIPDAB2 located at 500-700 nm between the Soret band and Q band was filled by combining with two kinds of organic dyes (D131 and D358). The multi-dye consisting of the three dyes realized a high J(sc) over 20 mA cm(-2). The use of copper iodide that has a higher conductivity than p-type organic semiconductors and copper complexes secured a high filling factor. Introduction of Li ions into the TiO2 photoelectrodes improved the open-circuit voltage (V-oc) along with a slight increase in J(sc). Light soaking also contributed to a higher V-oc. The conversion efficiency of the present SDSC was as high as 10%.
机译:为了实现高效的固态染料敏化太阳能电池(SDSC),染料的吸收范围应扩展到近红外范围以增加短路电流密度(J(SC));高j(sc)又需要高导电p型半导体。具有卟啉二聚体结构的新开发的染料(DiPDAB2)提供了比具有类似框架(DTBC)的常规染料在700-800nm的长波长范围内的常规染料,导致发生的光子到电流转化效率。通过与两种有机染料组合(D131和D358)组合,填充位于SORET带和Q带之间的500-700nm的DIPDAB2的吸收光谱的浸渍。由三种染料组成的多染料实现了超过20 mA cm(-2)的高j(sc)。使用具有比p型有机半导体和铜配合物更高的导电性的铜碘化物固定了高填充因子。 Li离子引入TiO2光电区的延长电路电压(V-OC)以及J(SC)的略微增加。光浸泡也有助于更高的V-OC。目前SDSC的转化效率高达10%。

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