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Asymmetric double donor-π-acceptor dyes based on phenothiazine and carbazole donors for dye-sensitized solar cells

机译:基于吩噻嗪和咔唑供体的非对称双供体-π-受体染料用于染料敏化太阳能电池

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AbstractFour organic dyes with asymmetric double donor-π-acceptor system were designed, synthesized and utilized in dye-sensitized solar cells (DSSCs), where phenothiazine and carbazole were introduced as double donors, butyl or octyl chain as the linker and cyanoacetic acid or rhodanine acetic acid as the electron acceptor. The design of double donor-π-acceptor system contributes to a distinctive increase of the molar extinction coefficient and benefits light-harvesting capability of these dyes. Due to superior electron injection efficiency, CPC-series dyes with cyanoacetic acid acceptor exhibit broader IPCE spectra and high IPCE responsive value compared with rhodanine-3-acetic acid acceptor, leading to higherJSC. Long alkyl chain favors antiaggregation effect and low charge recombination rate is observed for dyes with octyl chain which display higherVOCthan those with butyl chain. Among four dyes, dye with octyl chain and cyanoacetic acid acceptor exhibits the highest short-circuit photocurrent density (9.64?mA?cm?2) and open-circuit photovoltage (720?mV), leading to the best overall power conversion efficiency of 4.76%.Graphical abstractFour organic
机译:<![CDATA [ 抽象 设计,合成并在染料敏化太阳能中设计了四种有机染料。将吩噻嗪和咔唑引入作为连接剂和Cyano乙酸作为电子受体的双供体,丁基或辛基链作为电子受体引入细胞(DSSCs)。双供体-π-受体系统的设计有助于摩尔消光系数的独特增加,并利用这些染料的光收获能力。由于电子注入效率优越,与氰基乙酸受体的CPC系列染料与Rhodanine-3-乙酸受体相比表现出更广泛的IPCE光谱和高IPCE响应值,导致更高的 J < CE:INF LOC =“POST”> SC 。长烷基链优化抗凝聚效果和低电荷重组率与辛酸链的染料观察到,辛基链显示出高度 v oc < / ce:斜体> 比用丁基链条。在四个染料中,含有辛基链和氰基乙酸受体的染料表现出最高的短路光电流密度(9.64?ma≤CMΔ2)和开路光电图(720?MV),导致最佳总电力转换效率为4.76%。 图形抽象 四有机

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