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首页> 外文期刊>Advanced Science >High-Performance Polymer Solar Cells Based on a Wide-Bandgap Polymer Containing Pyrrolo[3,4- f ]benzotriazole-5,7-dione with a Power Conversion Efficiency of 8.63%
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High-Performance Polymer Solar Cells Based on a Wide-Bandgap Polymer Containing Pyrrolo[3,4- f ]benzotriazole-5,7-dione with a Power Conversion Efficiency of 8.63%

机译:基于含吡咯并[3,4-f]苯并三唑-5,7-二酮的宽带隙聚合物的高性能聚合物太阳能电池,功率转换效率为8.63%

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Abstract A novel donor?¢????acceptor type conjugated polymer based on a building block of 4,8-di(thien-2-yl) - 6-octyl-2-octyl-5 H- pyrrolo[3,4- f ]benzotriazole-5,7(6 H )-dione (TZBI) as the acceptor unit and 4,8-bis(5-(2-ethylhexyl)thiophen-2-yl)???-benzo???-[1,2- b :4,5- b?¢???2 ]dithiophene as the donor unit, named as PTZBIBDT, is developed and used as an electron-donating material in bulk-heterojunction polymer solar cells. The resulting copolymer exhibits a wide bandgap of 1.81 eV along with relatively deep highest occupied molecular orbital energy level of ?¢????5.34 eV. Based on the optimized processing conditions, including thermal annealing, and the use of a water/alcohol cathode interlayer, the single-junction polymer solar cell based on PTZBIBDT:PC 71 BM ([6,6]-phenyl-C 71 -butyric acid methyl ester) blend film affords a power conversion efficiency of 8.63% with an open-circuit voltage of 0.87 V, a short circuit current of 13.50 mA cm ?¢????2 , and a fill factor of 73.95%, which is among the highest values reported for wide-bandgap polymers-based single-junction organic solar cells. The morphology studies on the PTZBIBDT:PC 71 BM blend film indicate that a fibrillar network can be formed and the extent of phase separation can be mani???-pulated by thermal annealing. These results indicate that the TZBI unit is a very promising building block for the synthesis of wide-bandgap polymers for high-performance single-junction and tandem (or multijunction) organic solar cells.
机译:摘要一种新型的基于4,8-二(噻吩-2-基)-6-辛基-2-辛基-5H-吡咯并[3,4-]构筑的供体受体型共轭聚合物。以f]苯并三唑-5,7(6 H)-二酮(TZBI)为受体单元和4,8-双(5-(2-乙基己基)噻吩-2-基)^-苯并^-[作为供体单元的1,2-b:4,5-b 2 + 2]二噻吩被开发为PTZBIBDT,并被用作体异质结聚合物太阳能电池中的电子给体材料。所得共聚物显示出1.81eV的宽带隙以及相对较深的最高占据分子轨道能级为5.34eV。基于优化的加工条件,包括热退火和使用水/醇阴极夹层,基于PTZBIBDT:PC 71 BM([6,6]-苯基-C 71-丁酸的单结聚合物太阳能电池)混合膜可提供8.63%的功率转换效率,0.87 V的开路电压,13.50 mA cm的短路电流,填充系数为73.95%。基于宽带隙聚合物的单结有机太阳能电池的最高报道值。在PTZBIBDT:PC 71 BM共混膜上的形态研究表明,可以形成原纤维网络,并且可以通过热退火来控制相分离的程度。这些结果表明,TZBI单元是用于高性能单结和串联(或多结)有机太阳能电池的宽带隙聚合物合成的非常有前途的构建基块。

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