首页> 外文期刊>Quimica nova >THEORETICAL CHARACTERIZATION AND DESIGN OF EFFICIENT PHOTOACTIVE MATERIALS BASED ON NAPHTHOPYRROLE AND NAPHTHOTHIOPHENE DERIVATIVES AIMED TOWARDS ORGANIC SOLAR CELLS
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THEORETICAL CHARACTERIZATION AND DESIGN OF EFFICIENT PHOTOACTIVE MATERIALS BASED ON NAPHTHOPYRROLE AND NAPHTHOTHIOPHENE DERIVATIVES AIMED TOWARDS ORGANIC SOLAR CELLS

机译:基于萘酚和萘酚衍生物的高效光敏材料的理论表征和设计

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In this research we have designed electron donors D-?€-A type containing two different ?€ fragments to obtain naphthopyrrole (D-NPR-A) and naphthotiophene (D-NTP-A) derivatives, proposed for the use in organic bulk hetero-junction (BHJ) solar cells (OSCs). These derivatives were characterized by DFT and TD-DFT calculations. For all the electron donors the anchorage fragment was 2-methylenemalononitrile, while the chromophore fragment was spanned between diphenylamine, triphenylamine, thiophene. Properties affecting open-circuit photovoltage (VOC) and short-circuit photocurrent (JSC) from D-?€-A type derivatives, such as geometric structure, frontier-molecular orbital energies, exciton driving force energy, natural bond orbital analysis, absorption spectra and light harvesting efficiency. Energy from HOMO and LUMO orbitals was discussed. Theoretical calculations from TD-DFT within Coulumb attenuation method CAM-B3LYP were able to predict excited state properties. The electron donors D-?€-A type exhibit photoelectric conversion efficiency above 10%, being the naphthopyrrole derivatives (D-NPR-A) along with the [6,6]-phenyl-C61-butyric acid methyl ester (PC61BM) the complexes with higher photoelectric properties, these complexes are proposed as photoactive materials in the construction of organic bulk hetero-junction solar cells.
机译:在这项研究中,我们设计了包含两个不同α-片段的电子供体D-α-A型,以得到萘吡咯(D-NPR-A)和萘噻吩(D-NTP-A)衍生物,建议用于有机体杂原子中。结(BHJ)太阳能电池(OSC)。这些衍生物通过DFT和TD-DFT计算来表征。对于所有电子供体,锚固片段是2-亚甲基丙二腈,而发色团片段跨越二苯胺,三苯胺,噻吩。影响D-A€-A型衍生物的开路光电压(VOC)和短路光电流(JSC)的属性,例如几何结构,前沿分子轨道能量,激子驱动力能量,自然键轨道分析,吸收光谱和光收集效率。讨论了来自HOMO和LUMO轨道的能量。根据库仑衰减法CAM-B3LYP中的TD-DFT进行的理论计算能够预测激发态性质。电子给体D-β-A-型具有萘并吡咯衍生物(D-NPR-A)和[6,6]-苯基-C61-丁酸甲酯(PC61BM),光电转换效率高于10%。具有较高光电性能的配合物,这些配合物被建议用作有机体异质结太阳能电池的光敏材料。

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