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首页> 外文期刊>Polymer bulletin >An alternating copolymer of fluorene donor and quinoxaline acceptor versus a terpolymer consisting of fluorene, quinoxaline and benzothiadiazole building units: synthesis and characterization
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An alternating copolymer of fluorene donor and quinoxaline acceptor versus a terpolymer consisting of fluorene, quinoxaline and benzothiadiazole building units: synthesis and characterization

机译:芴供体和喹喔啉受体的交替共聚物与芴,喹喔啉和苯并噻二唑结构单元组成的三元共聚物:合成和表征

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摘要

An alternating polyfluorene copolymer based on fluorene donor and quinoxaline acceptor (P1) and an alternating terpolymer (P2) with fluorene (50 %) donor and quinoxaline (25 %) and benzothiadiazole (25 %) acceptor units were designed and synthesized for use as photoactive materials in solar cells. The presence of benzothiadiazole unit in P2 increased the optical absorption coverage in the range of 350-600 nm, which is an interesting property and a big potential for achieving improved photovoltaic performances with judicious optimization of the devices. Solar cells were fabricated from 1:4 blends of polymers-PCBM[70] using o-dichlorobenzene (o-DCB) as processing solvent, and P1 showed a power conversion efficiency (PCE) of 3.18 %, with a short-circuit current density (J (SC)) of 7.78 mA/cm(2), an open-circuit voltage (V (OC)) of 0.82 V, and a fill factor (FF) of 50 % while P2 showed an overall PCE of 2.14 % with corresponding J (SC) of 5.97 mA/cm(2), V (OC) of 0.84 V and FF of 42 %. In general, P2 gave lower J (SC) and FF presumably due to the fine domain sizes of the polymer-PCBM[70] blend as seen from the atomic force microscopy (AFM) image which might have affected the charge carrier transport.
机译:设计并合成了基于芴供体和喹喔啉受体(P1)的交替聚芴共聚物以及具有芴(50%)供体和喹喔啉(25%)和苯并噻二唑(25%)受体单元的交替三元共聚物(P2)太阳能电池中的材料。 P2中苯并噻二唑单元的存在增加了350-600 nm范围内的光吸收覆盖率,这是一个令人感兴趣的特性,并且通过明智地优化器件可以提高光伏性能。使用邻二氯苯(o-DCB)作为加工溶剂,由聚合物-PCBM [70]的1:4混合物制成太阳能电池,P1的功率转换效率(PCE)为3.18%,具有短路电流密度(J(SC))为7.78 mA / cm(2),开路电压(V(OC))为0.82 V,填充系数(FF)为50%,而P2的总体PCE为2.14%相应的J(SC)为5.97 mA / cm(2),V(OC)为0.84 V,FF为42%。通常,P2给出较低的J(SC)和FF,这可能是由于从原子力显微镜(AFM)图像中看到的聚合物-PCBM [70]共混物的微区尺寸小,这可能已经影响了电荷载流子的传输。

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