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Low Band Gap Donor-Acceptor Conjugated Polymers toward Organic Solar Cells Applications

机译:低带隙供体-受体共轭聚合物在有机太阳能电池中的应用

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Mixtures of conjugated polymers and fullerenes command considerable attention for application in organic solar cells.To increase their efficiency,the design of new materials that absorb at longer wavelengths is of substantial interest.We have prepared such low band gap polymers using the donor-acceptor route,which is based on the concept that the interaction between alternating donors and acceptors results in a compressed band gap.Furthermore,for application in photovoltaic devices,sufficient polymer solubility is required.We have prepared four low band gap conjugated polymers,with a bis(1-cyano-2-thienylvinylene)phenylene base structure,and achieved an excellent solubility by the introduction of long alkoxy and alkyl side chains.The polymers were synthesized via an oxidative polymerization.Their electronic properties were determined from electrochemical and optical measurements,which confirm that they indeed have a low band gap.In the blend of such a low band gap polymer with PCBM,evidence for efficient charge transfer was obtained from PL and EPR measurements.However,bulk heterostructure solar cells made of such blends display only low efficiencies,which is attributed to low charge carrier mobilities.
机译:共轭聚合物和富勒烯的混合物在有机太阳能电池中的应用引起了极大的关注。为了提高效率,设计在更长波长下吸收的新材料引起了人们的极大兴趣。我们使用供体-受体途径制备了这种低带隙聚合物,其基于交替的供体和受体之间的相互作用导致压缩的带隙的概念。此外,对于在光伏器件中的应用,需要足够的聚合物溶解度。我们制备了四种低带隙共轭聚合物,其双( 1-氰基-2-噻吩基乙烯基)亚苯基结构,并通过引入长的烷氧基和烷基侧链获得优异的溶解性。通过氧化聚合合成聚合物,通过电化学和光学测量确定其电子性能,证实了如此低的带隙聚合物与PCBM的共混物从PL和EPR测量获得有效的电荷转移。但是,由这种共混物制成的大量异质结构太阳能电池仅显示低效率,这归因于低的载流子迁移率。

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