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首页> 外文期刊>Applied Organometallic Chemistry >Novel D - π - A dye sensitizers of polymeric metal complexes based on 8-hydroxyquinoline and phenylethyl or fluorene units: synthesis, characterization and photovoltaic applications for dye-sensitized solar cells
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Novel D - π - A dye sensitizers of polymeric metal complexes based on 8-hydroxyquinoline and phenylethyl or fluorene units: synthesis, characterization and photovoltaic applications for dye-sensitized solar cells

机译:新型D-π-A基于8-羟基喹啉和苯乙基或芴单元的聚合金属配合物的染料敏化剂:染料敏化太阳能电池的合成,表征和光伏应用

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摘要

Four novel donor - -π-bridge - acceptor (D-π-A) polymeric metal complexes (P1-P4) based on 8-hydroxyquinoline metal complexes were synthesized and tested for their performance in dye-sensitized solar cells (DSSCs), The polymeric metal complexes dyes use alkoxy benzene or alkyl fluorene as the electron donor and C=C as π linker; the 8-hydroxyquinoline derivative complex part was used as the electron acceptor and diaminomaleonitrile was used as ancillary ligand. The two strongly electron-withdrawing cyano groups in the polymer structure can provide an efficient charge transport in the intramolecular between donor and acceptor parts. The thermal, photophysical, electrochemical and photovoltaic properties of these copolymers were investigated by TGA, differential scanning calorimetry, cyclic voltammetry and cureent density-voltage curves, and the results showed that dye containing complex Zn(II) and alkoxy benzene unit benefited the generation of photocurrent and open-circuit voltages, and a maximum power conversion efficiency of 1.91 % (P2) was obtained, with an open-circuit voltage of 0.71 V, a short-circuit current density of 4.23 mA cm~(-2), and a fill factor of 38.6% under AM1.5G irradiation. The study results also show that the four polymers exhibit good thermal stability, indicating that these polymeric metal complexes are suitable for the fabrication processes of optoelectronic devices.
机译:合成了四种基于8-羟基喹啉金属配合物的新型供体-π-桥-受体(D-π-A)聚合金属配合物(P1-P4),并测试了它们在染料敏化太阳能电池(DSSC)中的性能。聚合金属络合物染料使用烷氧基苯或烷基芴作为电子给体,C = C作为π键;将8-羟基喹啉衍生物配合物部分用作电子受体,将二氨基马来腈用作辅助配体。聚合物结构中的两个强吸电子氰基可在供体和受体之间的分子内提供有效的电荷传输。通过TGA,差示扫描量热法,循环伏安法和固化剂密度-电压曲线研究了这些共聚物的热,光物理,电化学和光伏性质,结果表明,含锌(II)配合物和烷氧基苯单元的染料有利于生成。光电流和开路电压的最大功率转换效率为1.91%(P2),开路电压为0.71 V,短路电流密度为4.23 mA cm〜(-2),并且AM1.5G辐照下的填充系数为38.6%。研究结果还表明,四种聚合物表现出良好的热稳定性,表明这些聚合物金属络合物适用于光电器件的制造工艺。

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