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All-Small-Molecule Solar Cells Incorporating NDI-Based Acceptors: Synthesis and Full Characterization

机译:包含基于NDI的受体的全小分子太阳能电池:合成和完整表征

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A series of naphthalene diimide (NDI)-based small molecules were synthesized as nonfullerene acceptors and incorporated in all-small-molecule solar cells. Three NDI-based small molecules, NDICN-T, NDICN-BT, and NDICN-TVT, were designed with different linkers between two NDI units to induce the different conjugation length and modulate the geometric structures of the NDI dimers. The small NDI-based dimer electron acceptors with slip-stacked structures that facilitate pi-pi stacking interactions and/or hinder excessive aggregation exhibited different morphological behaviors, such as miscibility or crystallinity in bulk heterojunction blends with 7,7'-(4,4-bis(2-ethylhexyl)-4H-silolo[3,2-b:4,5-bldithiophene-2,6-diyl)bis(6-fluoro-4-(5'-hexyl-[2,2'-bi-thiophen]-5-y1)benzo[c][1,2,5]thiadiazole) (DTS-F) electron donors. The photovoltaic devices prepared with NDICN-TVT gave the highest power conversion efficiency (PCE) of 3.01%, with an open-circuit voltage (V-oc) of 0.75 V, a short-circuit current density (J(sc)) of 7.10 mA cm(-2), and a fill factor of 56.2%, whereas the DTS-F:NDICN-T and DTS-F:NDICN-BT devices provided PCEs of 1.81 and 0.13%, respectively. Studies of the charge-generation properties, charge-transfer dynamics, and charge-transport properties for understanding the structure-property relations revealed that DTS-F:NDICN-TVT blend films with well developed domains and well-ordered crystalline structures performed well, whereas an excessive miscibility between DTS-F and NDICN-BT disrupted the crystallinity of the material and yielded a poor device performance.
机译:将一系列萘二酰亚胺(NDI)的小分子合成为非含有非对子的受体,并在全小分子太阳能电池中掺入。基于NDI的小分子,NDICN-T,NDICN-BT和NDICN-TVT,设计有两个NDI单元之​​间的不同连接器,以诱导不同的共轭长度并调节NDI二聚体的几何结构。具有促进PI-PI堆叠相互作用和/或阻碍过量聚集的小型NDI的二聚体电子受体表现出不同的形态学行为,例如本体异质结共混物的混溶性或结晶性,具有7,7' - (4,4 -BIS(2-乙基己基)-4H-硅胶[3,2-B:4,5-苯二苯丙基烯-2,6-二基)双(6-氟-4-(5'-己基 - [2,2'- Bi-Thiophen] -5-Y1)苯并[c] [1,2,5]噻二唑)(DTS-F)电子给体。用NDICN-TVT制备的光伏器件使得最高功率转换效率(PCE)为3.01%,开路电压(V-OC)为0.75 V,短路电流密度(J(SC))为7.10 MA CM(-2),填充因子为56.2%,而DTS-F:NDICN-T和DTS-F:NDICN-BT器件分别提供1.81和0.13%的PCE。用于了解结构 - 财产关系的电荷发电性能,电荷转移动力学和电荷运输性能揭示了DTS-F:NDICN-TVT混合薄膜,具有良好的开发结构域和顺序的晶体结构良好,而DTS-F和NDICN-BT之间的过度混溶破坏了材料的结晶度,并产生了差的装置性能。

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