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Synthesis and characterization of high molecular weight and regioregular poly[3-(4-octylphenyl)thiophene] for bulk heterojunction photovoltaic cells

机译:块状异质结光伏电池用高分子量和区域规则的聚[3-(4-辛基苯基)噻吩]的合成与表征

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Various poly[3-(4-octylphenyl) thiophene]s (POPTs) were prepared either by oxidative polymerisation or by chain-growth Grignard metathesis (GRIM). In accordance with previous results, the former M). polymerisation yielded polydisperse POPT. The method based on the GRIM reaction made possible the preparation of medium and higher molecular weight polymers with lower polydispersities. The POPTs were found to have band-gaps of ca. 1.7 eV. The photovoltaic characteristics of POPTs-blend-[6,6]- phenyl C-61 butyric acid methyl ester (PCBM) composites under AM 1.5 conditions in standard ITO/PEDOT-blend-PSS/ POPT-blend blend-PCBM/LiF/Al solar cells were studied. It was found that POPT prepared via GRIM could deliver greater efficiencies than its equivalent prepared by oxidative polymerisation. It is expected that access to even higher molecular weight POPTs may improve the efficiencies of such devices.
机译:各种聚[3-(4-辛基苯基)噻吩](POPT)可以通过氧化聚合或通过链增长格氏试剂(GRIM)制备。按照以前的结果,前者M)。聚合产生多分散的POPT。基于GRIM反应的方法使得制备具有较低多分散性的中等分子量和较高分子量的聚合物成为可能。发现POPT的带隙约为。 1.7 eV。在标准ITO / PEDOT-blend-PSS / POPT-blend blend-PCBM / LiF / Al中,在AM 1.5条件下,POPTs-混合-[6,6]-苯基C-61丁酸甲酯(PCBM)复合材料的光伏特性研究了太阳能电池。发现通过GRIM制备的POPT可以提供比通过氧化聚合制备的POPT更高的效率。期望获得更高分子量的POPT可能会提高此类设备的效率。

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