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Simple Bithiophene–Rhodanine-Based Small Molecule Acceptor for Use in Additive-Free Nonfullerene OPVs with Low Energy Loss of 0.51 eV

机译:基于简单的白藜芦醇碱基小分子受体,用于无添加剂的非替代OPV,能量损失为0.51eV

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The introduction of rigid and extended ladder-type fused-ring cores, such as indacenodithiophene, has enabled the synthesis of a variety of nonfullerene small molecules for use as electron acceptors in high-performance organic photovoltaic cells. Contrasting with recent trends, a very simple-structured nonfullerene acceptor (NFA), T2-ORH, consisting of a bithiophene core and octyl-substituted rhodanine ends, is synthesized in two steps from inexpensive commercially available raw materials. Its relatively short p-conjugation results in a wide bandgap and a blue-shifted UV-vis absorption profile complementary to those of poly[4,8-bis(5-(2-ethylhexyl) thiophen-2-yl) benzo[1,2-b: 4,5-b'] dithiophene-co-3-fluorothieno[3,4-b] thiophene-2-carboxylate] (PTB7-Th). Despite a sufficient offset between T2-ORH and PTB7-Th, the lowest unoccupied molecular orbital (LUMO) energy level of T2-ORH is still higher than the LUMOs of other NFAs (e.g., ITIC). Therefore, the PTB7-Th: T2-ORH blend film exhibits an efficiency of 9.33% with a high open-circuit voltage of 1.07 V and a short-circuit current of 14.72 mA cm(-2) in an additive-free single-junction cell. Importantly, the optimized device displays a remarkably low energy loss of 0.51 eV, in which bimolecular and monomolecular charge recombination is effectively suppressed by solvent vapor annealing treatment. The blend film has a very smooth and homogeneous morphology, providing both vertical and parallel charge transport in the devices.
机译:刚性和延长梯型熔环芯的引入,例如茚环二萜烯,使得各种非氟苯丁烯小分子的合成能够用作高性能有机光伏电池中的电子受体。与近期趋势的对比度,由二硫代丙烯烯核和辛基取代的罗达尼末端组成的非常简单的结构化的非氟氯丁烯受体(NFA),T2-ORH,由廉价的市售原料中的两步合成。其相对短的p缀合导致宽的带隙和与聚[4,8-双(5-(2-(2-乙基己基)噻吩-2-基)苯并[1,中的蓝移紫外 - Vis吸收分布互补[1, 2-B:4,5-B']二噻吩-CO-3-氟噻吩[3,4-B]噻吩-2-羧酸盐](PTB7-TH)。尽管T2-ORH和PTB7-TH之间足够的偏移,但T2-ORH的最低未占用的分子轨道(LUMO)能级仍然高于其他NFAS(例如,ITIC)的LUMO。因此,PTB7-TH:T2-O或H混合膜的效率为9.33%,高开关电压为1.07 V,在无添加单结中的14.72 mA cm(-2)的短路电流。细胞。重要的是,优化的装置显示出0.51eV的显着低能量损失,其中通过溶剂蒸汽退火处理有效地抑制了双分子和单分子电荷重组。共混膜具有非常光滑和均匀的形态,在装置中提供垂直和平行的电荷传输。

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