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Efficient bilayer polymer solar cells possessing planar mixed-heterojunction structures

机译:具有平面混合异质结结构的高效双层聚合物太阳能电池

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摘要

We have investigated the influence of thermal annealing on the performance of polymer bilayer solar cell devices incorporating poly{2,6-(4,4-bis[2-ethylhexyl]-4H-cyclopenta[2,1-b;3,4-b']dithiophene)-alt-4,7-(2,1,3-bxnzothiadiazole)} (PCPDTTBT) as the donor and two kinds of fullerenes (C_(60), C_(70)) as acceptors. The higher absorption of C_(70) increased the external quantum efficiency in the spectral range 400-600 nm. We observed morphological changes of the polymer films when the pre-annealing temperature was near the crystalline temperature (T_c, 207 °C). These nanostructural transformations resulted in a modified interfacial morphology of the donor phases and, therefore, greatly influenced the device performance. Post-annealing treatment reorganized the interface between the donor and acceptor phases, leading to better contact. The highest power conversion efficiency (2.85%) was obtained when we performed device pre- and post-annealing both at 200 °C for 30 min; the open-circuit voltage was 0.69 V and the short-circuit current was 8.42 mA cm~(-2).
机译:我们已经研究了热退火对掺有聚{2,6-(4,4-双[2-乙基己基] -4H-环戊[2,1-b; 3,4-]的聚合物双层太阳能电池器件性能的影响。 b'] dithiophene)-alt-4,7-(2,1,3-bxnzothiadiazole)}(PCPDTTBT)作为供体,两种富勒烯(C_(60),C_(70))作为受体。 C_(70)的更高吸收提高了在400-600 nm光谱范围内的外部量子效率。当预退火温度接近结晶温度(T_c,207°C)时,我们观察到了聚合物薄膜的形貌变化。这些纳米结构的转变导致供体相的界面形态发生了改变,因此极大地影响了器件性能。退火后处理重新组织了供体和受体相之间的界面,从而实现了更好的接触。当我们在200°C进行30分钟的器件预退火和后退火时,可获得最高的功率转换效率(2.85%)。开路电压为0.69 V,短路电流为8.42 mA cm〜(-2)。

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