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Synthesis and photovoltaic performance of dihydrodibenzoazepine-based sensitizers with additional lateral anchor

机译:具有附加侧向锚固剂的二氢二苯并a庚因基增敏剂的合成和光电性能

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摘要

Three novel metal-free organic dyes with dihydro-5H-dibenzo[6,f)]azepine as a donor and cyanoacrylic acid as an anchoring unit were designed as an innovative linear skeleton of D-D-π-A type of organic dyes. The conversion efficiency of the derived dye-sensitized solar cells is moderate. Among them, the dye with a hydroxy group as an additional anchoring moiety exhibited the highest UV-Vis absorption with a maximum molar extinction coefficient of 24,136 M~(-1) cm~(-1) at λ_(max) = 458 nm and the best photovoltaic performance with an overall power conversion efficiency of 4.88%, while the dye with a carboxy group as an additional anchoring moiety exhibited the lowest conversion efficiency (4.52%). The results show that the dye loading on the film and photovoltaic performance of the dyes were influenced by the additional anchoring units.
机译:设计了三种新颖的无金属有机染料,以二氢-5H-二苯并[6,f)]氮杂为供体,并以氰基丙烯酸为锚定单元,作为D-D-π-A型有机染料的创新线性骨架。所获得的染料敏化太阳能电池的转换效率是中等的。其中,具有羟基作为附加锚固部分的染料在λ_(max)= 458 nm时表现出最高的UV-Vis吸收,最大摩尔消光系数为24,136 M〜(-1)cm〜(-1)。最佳的光伏性能,总功率转换效率为4.88%,而带有羧基作为附加锚固部分的染料则显示出最低的转换效率(4.52%)。结果表明,膜上的染料负载量和染料的光电性能受附加的锚固单元影响。

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