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首页> 外文期刊>Organic Electronics >Phthalimide and naphthalimide: Effect of end-capping groups on molecular properties and photovoltaic performance of 9-fluorenone based acceptors for organic solar cells
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Phthalimide and naphthalimide: Effect of end-capping groups on molecular properties and photovoltaic performance of 9-fluorenone based acceptors for organic solar cells

机译:邻苯二甲酰亚胺和萘二甲酰亚胺:封端基团对基于9芴酮的有机太阳能电池分子性能和光伏性能的影响

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摘要

A novel 2-butyloctyl (BO) substituted phthalimide (PI) end-capped fluorenone [PI-FN-PI (BO)] non-fullerene electron acceptor for organic photovoltaics has been designed and synthesized to study the effect of end-capping groups on the optoelectronic properties compared to our earlier reported naphthalimide (NAI) terminated fluorenone NAI-FN-NAI (BO) reference compound. The electron withdrawing terminal NAI groups were replaced by a PI group in order to evaluate the influence of electron affinity of such group on the lowest occupied molecular orbital (LUMO) energy level and other optoelectronic properties. The newly synthesized PI-FN-PI (BO) with a 2-butyloctyl alkyl chain is sparingly soluble in organic solvents due to its more planar structure and short alkyl chain. For organic solar cell devices, solubility of the active layer blend is extremely important so higher solubility is the key requirement. In order to enhance the solubility of the compound, we synthesized 2-decyltetradecyl (DT) substituted phthalimide (PI) end-capped fluorenone [PI-FN-PI (DT)]. Furthermore, another new compound NAI-FN-NAI (DT) was produced to compare with PI-FN-PI (DT) since both of these compounds have similar side alkyl chain and middle core but different end capping groups. It is clearly demonstrated that this simple chemical modification noticeably influences thermal, optical, electrochemical properties and significantly impacts the photovoltaic performance.
机译:设计并合成了一种新型的2-丁基辛基(BO)取代的邻苯二甲酰亚胺(PI)封端的芴酮[PI-FN-PI(BO)]非富勒烯电子受体,以研究封端基对与我们先前报道的萘二甲酰亚胺(NAI)封端的芴酮NAI-FN-NAI(BO)参比化合物相比,其光电性能更高。吸电子的末端NAI基团被PI基团取代,以便评估该基团的电子亲和力对最低占据分子轨道(LUMO)能级和其他光电性能的影响。具有2-丁基辛基烷基链的新合成的PI-FN-PI(BO)由于其更平坦的结构和较短的烷基链而难溶于有机溶剂。对于有机太阳能电池装置,活性层混合物的溶解度非常重要,因此更高的溶解度是关键要求。为了提高化合物的溶解度,我们合成了2-癸基十四烷基(DT)取代的邻苯二甲酰亚胺(PI)封端的芴酮[PI-FN-PI(DT)]。此外,还生产了另一种新化合物NAI-FN-NAI(DT)与PI-FN-PI(DT)进行比较,因为这两种化合物均具有相似的烷基侧链和中核,但封端基团不同。清楚地表明,这种简单的化学修饰显着影响热,光学,电化学性质,并显着影响光伏性能。

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